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Preparation of III-V semiconductor nanocrystals 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C01B-025/00
  • C22C-021/00
출원번호 US-0231345 (1994-04-21)
발명자 / 주소
  • Alivisatos A. Paul (Berkeley CA) Olshavsky Michael A. (Brunswick OH)
출원인 / 주소
  • The Regents of University of California (Oakland CA 02)
인용정보 피인용 횟수 : 320  인용 특허 : 0

초록

Nanometer-scale crystals of III-V semiconductors are disclosed, They are prepared by reacting a group III metal source with a group V anion source in a liquid phase at elevated temperature in the presence of a crystallite growth terminator such as pyridine or quinoline.

대표청구항

Particles of III-V semiconductor, said particles being crystalline, being soluble in quinoline or pyridine, and being sized such that at least about 50% are between 1 nanometer and 6 nanometers across.

이 특허를 인용한 특허 (320)

  1. Tischler, Jonathan; Bradley, Michael Scott; Bulovic, Vladimir, Absorbing film.
  2. Ignatius, Michael J.; Molokanova, Elena; Savtchenko, Alexei; Bartel, Joseph A.; Zhao, Weiwen; Treadway, Joseph A., Activation and monitoring of cellular transmembrane potentials.
  3. Onicha, Anthony C.; Sinks, Louise E.; Weber, Stefanie L., Apparatus and methods for continuous flow synthesis of semiconductor nanowires.
  4. Dubrow, Robert S.; Casillas, Carlos, Apparatus and methods for high density nanowire growth.
  5. Stumbo,David P.; Empedocles,Stephen A.; Leon,Francisco; Parce,J. Wallace, Artificial dielectrics using nanostructures.
  6. Pinaud, Fabien; King, David; Weiss, Shimon, Bioactivation of particles.
  7. Bawendi Moungi G. ; Mikulec Frederic V. ; Sundar Vikram C., Biological applications of quantum dots.
  8. Bawendi Moungi G. ; Mikulec Frederick V. ; Sundar Vikram C., Biological applications of quantum dots.
  9. Bawendi, Moungi G.; Sundar, Vikram C.; Mikulec, Frederic V., Biological applications of quantum dots.
  10. Bawendi,Moungi G; Sundar,Vikram C; Mikulec,Frederic V, Biological applications of quantum dots.
  11. Breen, Craig; Steckel, Jonathan S.; Ramprasad, Dorai, Blue emitting semiconductor nanocrystals and compositions and devices including same.
  12. Breen, Craig; Steckel, Jonathan S.; Ramprasad, Dorai, Blue emitting semiconductor nanocrystals and compositions and devices including same.
  13. Breen, Craig; Steckel, Jonathan S.; Ramprasad, Dorai, Blue emitting semiconductor nanocrystals and compositions and devices including same.
  14. Steckel, Jonathan S.; Zimmer, John P.; Coe-Sullivan, Seth; Stott, Nathan E.; Bulović, Vladimir; Bawendi, Moungi G., Blue light emitting semiconductor nanocrystal materials.
  15. Steckel,Jonathan S.; Zimmer,John P.; Coe Sullivan,Seth; Stott,Nathan E.; Bulović,Vladimir; Bawendi,Moungi G., Blue light emitting semiconductor nanocrystal materials.
  16. Muraoka, Masashi; Saitoh, Kohtaroh; Mizuhata, Hirotaka; Onishi, Takenori; Zhu, Yimin; Stefan, Ionel C.; Qian, Baixin; Goldman, Jay, Catalyst layer for fuel cell membrane electrode assembly, fuel cell membrane electrode assembly using the catalyst layer, fuel cell, and method for producing the catalyst layer.
  17. Bawendi, Moungi G.; Sundar, Vikram C., Composite material including nanocrystals and methods of making.
  18. Bawendi,Moungi G.; Sundar,Vikram C., Composite material including nanocrystals and methods of making.
  19. Whiteford, Jeffery A.; Buretea, Mihai A.; Chen, Jian; Freeman, William P.; Meisel, Andreas; Nguyen, Linh; Parce, J. Wallace; Scher, Erik, Compositions and methods for modulation of nanostructure energy levels.
  20. Whiteford, Jeffery A.; Buretea, Mihai A.; Chen, Jian; Freeman, William P.; Meisel, Andreas; Nguyen, Linh; Parce, J. Wallace; Scher, Erik C., Compositions and methods for modulation of nanostructure energy levels.
  21. Barbera-Guillem Emilio ; Thurston Marlin O., Continuous flow process for production of semiconductor nanocrystals.
  22. Miller, Jeffrey, Continuously variable graded artificial dielectrics using nanostructures.
  23. Bawendi,Moungi G.; Mikulec,Frederic V.; Kim,Sungjee, Core-shell nanocrystallite comprising tellurium-containing nanocrystalline core and semiconductor shell.
  24. Sundar,Vikram C.; Bawendi,Moungi G.; Joannopoulos,John D.; Ibanescu,Mihai, Creating photon atoms.
  25. Gunderson, Kevin; Stuelpnagel, John R.; Chee, Mark S., Detection of nucleic acid reactions on bead arrays.
  26. Gunderson, Kevin; Stuelpnagel, John R.; Chee, Mark S.; Fan, Jian-Bing, Detection of nucleic acid reactions on bead arrays.
  27. Gunderson, Kevin; Stuelpnagel, John R.; Chee, Mark S.; Fan, Jian-Bing, Detection of nucleic acid reactions on bead arrays.
  28. Kazlas, Peter T.; Zhou, Zhaoqun; Niu, Yuhua; Kim, Sang-Jin; Mashford, Benjamin S., Device including quantum dots.
  29. Kim, Sungjee; Bawendi, Moungi G., Devices comprising coated semiconductor nanocrystal heterostructures.
  30. Kim, Sungjee; Bawendi, Moungi G., Devices comprising coated semiconductor nanocrystals heterostructures.
  31. Dubrow, Robert S.; Miller, Jeffrey; Stumbo, David P., Dielectrics using substantially longitudinally oriented insulated conductive wires.
  32. Bawendi, Moungi; Porter, Venda J.; Kastner, Marc; Mentzel, Tamar, Electro-optical device.
  33. Bawendi, Moungi; Porter, Venda J.; Kastner, Marc; Mentzel, Tamar, Electro-optical device including nanocrystals.
  34. Zhu, Yimin; Goldman, Jay L.; Qian, Baixin; Stefan, Ionel C.; Komoda, Mutsuko; Mizuhata, Hirotaka; Onishi, Takenori, Electrochemical catalysts for fuel cells.
  35. Sohn,Byung Hee; Kim,Kyung Kon; Jin,Jung Il; Pu,Lyong Sun, Electroluminescent device using metal nanoparticles.
  36. Kalkan,Ali Kaan; Fonash,Stephen J., Electronic and opto-electronic devices fabricated from nanostructured high surface to volume ratio thin films.
  37. Sargent, Edward; Konstantatos, Gerasimos; Levina, Larissa; Howard, Ian; Klem, Ethan J. D.; Clifford, Jason, Electronic and optoelectronic devices with quantum dot films.
  38. Sargent, Edward; Levina, Larissa; Konstantatos, Gerasimos; Howard, Ian; Klem, Ethan J. D.; Clifford, Jason, Electronic and optoelectronic devices with quantum dot films.
  39. Sargent, Edward; Levina, Larissa; Konstantatos, Gerasimos; Howard, Ian; Klem, Ethan J. D.; Clifford, Jason, Electronic and optoelectronic devices with quantum dot films.
  40. Chee, Mark S.; Barnard, Steven M.; Zhao, Chanfeng, Encoding and decoding of array sensors utilizing nanocrystals.
  41. Chee, Mark S.; Barnard, Steven M.; Zhao, Chanfeng, Encoding and decoding of array sensors utilizing nanocrystals.
  42. LoCascio, Michael; Ballinger, Clinton T.; Landry, Daniel P.; Raynolds, James E., Fabry-perot opitcal switch having a saturable absorber.
  43. Yen,Brian; Guenther,Axel; Jensen,Klavs F.; Bawendi,Moungi G.; Schmidt,Martin, Flow method and reactor for manufacturing noncrystals.
  44. Naasani, Imad, Functionalized fluorescent nanocrystal compositions and methods for their preparation.
  45. Naasani, Imad, Functionalized fluorescent nanocrystal compositions and methods for their preparation.
  46. Naasani,Imad, Functionalized fluorescent nanocrystal compositions and methods of making.
  47. Naasani,Imad, Functionalized fluorescent nanocrystals, and methods for their preparation and use.
  48. Liu, Mingjun; Dubrow, Robert S.; Freeman, William P.; Kucma, Adrienne D.; Parce, J. Wallace, Functionalized matrices for dispersion of nanostructures.
  49. Liu, Mingjun; Dubrow, Robert S.; Freeman, William P.; Kucma, Adrienne D.; Parce, J. Wallace, Functionalized matrices for dispersion of nanostructures.
  50. Liu, Mingjun; Dubrow, Robert; Freeman, William P.; Kucma, Adrienne; Parce, J. Wallace, Functionalized matrices for dispersion of nanostructures.
  51. Alivisatos, A. Paul; Scher, Erik C.; Manna, Liberato, Graded core/shell semiconductor nanorods and nanorod barcodes.
  52. Alivisatos, A. Paul; Scher, Erik C.; Manna, Liberato, Graded core/shell semiconductor nanorods and nanorod barcodes.
  53. Alivisatos, A. Paul; Scher, Erik C.; Manna, Liberato, Graded core/shell semiconductor nanorods and nanorod barcodes.
  54. Peng,Xiaogang; Yu,Weiyong; Battaglia,David, High quality colloidal nanocrystals and methods of preparing the same in non-coordinating solvents.
  55. Bawendi, Moungi; Jensen, Klaus F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color selective nanocrystalline materials.
  56. Bawendi Moungi ; Jensen Klavs F. ; Dabbousi Bashir O.,SAX ; Rodriguez-Viejo Javier,ESX ; Mikulec Frederic Victor, Highly luminescent color-selective materials and method of making thereof.
  57. Bawendi Moungi ; Jensen Klavs F. ; Dabbousi Bashir O.,SAX ; Rodriguez-Viejo Xavier,ESX ; Mikulec Frederic Victor, Highly luminescent color-selective nano-crystalline materials.
  58. Bawendi, Moungi G.; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  59. Bawendi, Moungi G.; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  60. Bawendi, Moungi G.; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  61. Bawendi, Moungi G.; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  62. Bawendi, Moungi G.; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriquez Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  63. Bawendi, Moungi; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  64. Bawendi, Moungi; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  65. Bawendi,Moungi; Jensen,Klavs F.; Dabbousi,Bashir O.; Rodriguez Viejo,Javier; Mikulec,Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  66. Naasani,Imad, Highly luminescent functionalized semiconductor nanocrystals for biological and physical applications.
  67. Guo, Wenzhuo; Chen, Jian; Dubrow, Robert; Freeman, William P., Highly luminescent nanostructures and methods of producing same.
  68. Guo, Wenzhuo; Chen, Jian; Dubrow, Robert; Freeman, William P., Highly luminescent nanostructures and methods of producing same.
  69. Guo, Wenzhuo; Chen, Jian; Dubrow, Robert; Freeman, William P., Highly luminescent nanostructures and methods of producing same.
  70. Guo, Wenzhuo; Chen, Jian; Dubrow, Robert; Freeman, William P., Highly luminescent nanostructures and methods of producing same.
  71. Hong, Seung-bum; Buehlmann, Simon; Jun, Shin-ae; Choa, Sung-hoond; Jang, Eun-joo; Kim, Yong-kwan, Information storage medium using nanocrystal particles, method of manufacturing the information storage apparatus including the information storage medium.
  72. Hong, Seung-bum; Buehlmann, Simon; Jun, Shin-ae; Choa, Sung-hoon; Jang, Eun-joo; Kim, Yong-kwan, Information storage medium using nanocrystal particles, method of manufacturing the information storage medium, and information storage apparatus including the information storage medium.
  73. Anderson, George P.; Mattoussi, Hedi; Mauro, J. Matthew; Bawendi, Moungi G.; Sundar, Vikram C., Inorganic particle conjugates.
  74. Anderson, George P.; Mattoussi, Hedi; Mauro, J. Matthew; Bawendi, Moungi G.; Sundar, Vikram C., Inorganic particle conjugates.
  75. Anderson, George P.; Mattoussi, Hedi; Mauro, J. Matthew; Bawendi, Moungi G.; Sundar, Vikram C., Inorganic particle conjugates.
  76. Anderson,George P.; Mattoussi,Hedi; Mauro,J. Matthew; Bawendi,Moungi G.; Sundar,Vikram C., Inorganic particle conjugates.
  77. Lewis, John; Klem, Ethan, Integrated optical upconversion devices and related methods.
  78. Bawendi, Moungi G.; Jensen, Klavs F., Inventory control.
  79. Bawendi, Moungi G.; Jensen, Klavs F., Inventory control.
  80. Bulovic,Vladimir; Coe,Seth A.; Woo,Wing Keung; Bawendi,Moungi G., Layered materials including nanoparticles.
  81. Tischler, Jonathan; Bradley, Michael Scott; Bulovic, Vladimir, Light emitting device.
  82. Bulović, Vladimir; Coe, Seth A.; Woo, Wing-Keung; Bawendi, Moungi G., Light emitting device including semiconductor nanocrystals.
  83. Chen, Jianglong; Bulovic, Vladimir; Anikeeva, Polina; Bawendi, Moungi G., Light emitting device including semiconductor nanocrystals.
  84. Coe-Sullivan, Seth; Steckel, Jonathan S.; Kim, LeeAnn; Bawendi, Moungi G.; Bulovic, Vladimir, Light emitting device including semiconductor nanocrystals.
  85. Ishida, Masaya; Morioka, Tatsuya; Hanaoka, Daisuke; Taneya, Mototaka; Fujita, Shigeo; Kawakami, Yoichi; Harada, Masafumi; Sasaki, Takatomo; Mori, Yusuke, Light-emitting apparatus, phosphor and method of producing it.
  86. Ishida, Masaya; Morioka, Tatsuya; Hanaoka, Daisuke; Taneya, Mototaka; Fujita, Shigeo; Kawakami, Yoichi; Harada, Masafumi; Sasaki, Takatomo; Mori, Yusuke, Light-emitting apparatus, phosphorescent portion, and method of producing the same.
  87. Linton, John R.; Squires, Emily M.; Modi, Rohit, Lighting devices, an optical component for a lighting device, and methods.
  88. Coe-Sullivan, Seth; Linton, John R.; Cohen, Daniel; Ritter, John E., Lighting systems and devices including same.
  89. Coe-Sullivan, Seth; Linton, John R.; Cohen, Daniel; Ritter, John E., Lighting systems and devices including same.
  90. Frangioni,John V.; Bawendi,Moungi G.; Kim,Sungjee; Lim,Yong Taik, Materials and methods for near-infrared and infrared lymph node mapping.
  91. Bulovic, Vladimir; Coe-Sullivan, Seth; Woo, Wing-Keung; Bawendi, Moungi G., Materials including semiconductor nanocrystals.
  92. Desai, Tejal; Daniels, R. Hugh; Sahi, Vijendra, Medical device applications of nanostructured surfaces.
  93. Dubrow, Robert S.; Bock, Lawrence A.; Daniels, R. Hugh; Hardev, Veeral D.; Niu, Chunming; Sahi, Vijendra, Medical device applications of nanostructured surfaces.
  94. Dubrow, Robert S.; Bock, Lawrence A.; Daniels, R. Hugh; Hardev, Veeral D.; Niu, Chunming; Sahi, Vijendra, Medical device applications of nanostructured surfaces.
  95. McNeil, Scott Earl; Fritts, Martin Joseph; Heddleston, Roy Reed; Mark, Martin B., Method and system for countering laser technology.
  96. McNeil,Scott Earl; Fritts,Martin Joseph; Heddleston,Roy Reed; Mark,Martin B., Method and system for countering laser technology.
  97. McNeil, Scott Earl, Method and system for detection using nanodot taggants.
  98. Banin, Uri; Kan, Shi Hai, Method for producing inorganic semiconductor nanocrystalline rods and their use.
  99. Furuta, Paul T.; Dubrow, Robert, Method for solventless quantum dot exchange.
  100. Huang, Wen-Chiang, Method for the production of semiconductor quantum particles.
  101. Nitta, Hiro; Farrell, Mike; Zhang, Wenjun; Grogan, Tom, Method of analyzing chromosomal inversions.
  102. Bruchez Marcel P. ; Daniels R. Hugh ; Empedocles Stephen A. ; Phillips Vince E. ; Wong Edith Y. ; Zehnder Donald A., Method of detecting an analyte in a sample using semiconductor nanocrystals as a detectable label.
  103. Bruchez, Marcel P.; Daniels, R. Hugh; Empedocles, Stephen A.; Phillips, Vince E.; Wong, Edith Y.; Zehnder, Donald A., Method of detecting an analyte in a sample using semiconductor nanocrystals as a detectable label.
  104. Stott,Nathan E.; Jensen,Klavs F.; Bawendi,Moungi G.; Yen,Brian K. H., Method of preparing nanocrystals.
  105. Chen, Jian; Cruden, Karen Chu; Duan, Xiangfeng; Liu, Chao; Parce, J. Wallace, Methods and devices for forming nanostructure monolayers and devices including such monolayers.
  106. Chen, Jian; Cruden, Karen Chu; Duan, Xiangfeng; Liu, Chao; Parce, J. Wallace, Methods and devices for forming nanostructure monolayers and devices including such monolayers.
  107. Chen, Jian; Cruden, Karen Chu; Duan, Xiangfeng; Liu, Chao; Parce, J. Wallace, Methods and devices for forming nanostructure monolayers and devices including such monolayers.
  108. Chen, Jian; Duan, Xiangfeng; Liu, Chao; Nallabolu, Madhuri L.; Parce, J. Wallace; Ranganathan, Srikanth, Methods and devices for forming nanostructure monolayers and devices including such monolayers.
  109. Chen, Jian; Duan, Xiangfeng; Liu, Chao; Nallabolu, Madhuri; Parce, J. Wallace; Ranganathan, Srikanth, Methods and devices for forming nanostructure monolayers and devices including such monolayers.
  110. Chen, Jian; Duan, Xiangfeng; Liu, Chao; Nallabolu, Madhuri; Parce, J. Wallace; Ranganathan, Srikanth, Methods and devices for forming nanostructure monolayers and devices including such monolayers.
  111. Duan, Xiangfeng; Liu, Chao, Methods and devices for forming nanostructure monolayers and devices including such monolayers.
  112. Heald, David L.; Cruden, Karen Chu; Duan, Xiangfeng; Liu, Chao; Parce, J. Wallace, Methods and devices for forming nanostructure monolayers and devices including such monolayers.
  113. Heald,David L.; Cruden,Karen Chu; Duan,Xiangfeng; Liu,Chao; Parce,J. Wallace, Methods and devices for forming nanostructure monolayers and devices including such monolayers.
  114. Freer, Erik; Hamilton, James M.; Stumbo, David P.; Komiya, Kenji; Shibata, Akihide, Methods and systems for electric field deposition of nanowires and other devices.
  115. Bartel, Joseph; Haley, Kari; Measho, Berhane, Methods for isolating and purifying nanoparticles from a complex medium.
  116. Martin, Samuel; Duan, Xiangfeng; Fujii, Katsumasa; Hamilton, James M.; Iwata, Hiroshi; Leon, Francisco; Miller, Jeffrey; Negishi, Tetsu; Ohki, Hiroshi; Parce, J. Wallace; Pereira, Cheri X. Y.; Schuele, Paul John; Shibata, Akihide; Stumbo, David P.; Okada, Yasunobu, Methods for nanowire alignment and deposition.
  117. Romano,Linda T.; Hamilton,James M., Methods for nanowire growth.
  118. Robbins, Virginia, Methods for oriented growth of nanowires on patterned substrates.
  119. Tulsky, Eric; Bartel, Joseph; Treadway, Joseph, Methods for preparation of ZnTe nanocrystals.
  120. Lagwinski, Willy; Harrington, Charles; Phelps, Bruce, Methods for verifying fluid movement.
  121. Lagwinski,Willy; Harrington,Charles A.; Phelps,Bruce H., Methods for verifying fluid movement.
  122. Lee, Howard Wing Hoon; Gao, Bingshen; Keshavarz, Majid, Methods of forming quantum dots of Group IV semiconductor materials.
  123. Sargent, Edward; Konstantatos, Gerasimos; Levina, Larissa; Howard, Ian; Klem, Ethan J. D.; Clifford, Jason, Methods of making quantum dot films.
  124. Sargent, Edward; Konstantatos, Gerasimos; Levina, Larissa; Howard, Ian; Klem, Ethan J. D.; Clifford, Jason, Methods of making quantum dot films.
  125. Sargent, Edward; Konstantatos, Gerasimos; Levina, Larissa; Howard, Ian; Klem, Ethan J. D.; Clifford, Jason, Methods of making quantum dot films.
  126. Empedocles, Stephen; Bock, Larry; Chow, Calvin; Duan, Xianfeng; Niu, Chungming; Pontis, George; Sahi, Vijendra; Romano, Linda T.; Stumbo, David, Methods of making, positioning and orienting nanostructures, nanostructure arrays and nanostructure devices.
  127. Empedocles,Stephen; Bock,Larry; Chow,Calvin Y. H.; Duan,Xianfeng; Niu,Chunming; Pontis,George; Sahi,Vijendra; Romano,Linda T.; Stumbo,David, Methods of making, positioning and orienting nanostructures, nanostructure arrays and nanostructure devices.
  128. Duan, Xiangfeng; Daniels, Hugh; Niu, Chunming; Sahi, Vijendra; Hamilton, James; Romano, Linda T., Methods of positioning and/or orienting nanostructures.
  129. Duan, Xiangfeng; Daniels, R. Hugh; Niu, Chunming; Sahi, Vijendra; Hamilton, James M.; Romano, Linda T., Methods of positioning and/or orienting nanostructures.
  130. Duan,Xiangfeng; Daniels,R. Hugh; Niu,Chunming; Sahi,Vijendra; Hamilton,James M.; Romano,Linda T., Methods of positioning and/or orienting nanostructures.
  131. Duan,Xiangfeng; Daniels,R. Hugh; Niu,Chunming; Sahi,Vijendra; Hamilton,James M.; Romano,Linda T., Methods of positioning and/or orienting nanostructures.
  132. Weiss, Shimon; Bruchez, Marcel; Alivisatos, Paul, Methods of use of semiconductor nanocrystal probes for treating a material.
  133. Dubrow, Robert S.; Romano, Linda T.; Stumbo, David P., Methods, devices and compositions for depositing and orienting nanostructures.
  134. Dubrow, Robert S.; Romano, Linda T.; Stumbo, David P., Methods, devices and compositions for depositing and orienting nanostructures.
  135. Dubrow,Robert; Romano,Linda T.; Stumbo,David, Methods, devices and compositions for depositing and orienting nanostructures.
  136. Chan, YinThai; Zimmer, John P.; Bawendi, Moungi G., Microspheres including nanoparticles.
  137. Chan, YinThai; Zimmer, John P.; Bawendi, Moungi G., Microspheres including nanoparticles.
  138. Chan,YinThai; Zimmer,John P.; Bawendi,Moungi G., Microspheres including nanoparticles.
  139. Chan,YinThai; Zimmer,John P.; Bawendi,Moungi G., Microspheres including nanoparticles in the peripheral region.
  140. Ignatius, Michael J.; Molokanova, Elena; Savtchenko, Alex, Monitoring and manipulating cellular transmembrane potentials using nanostructures.
  141. Ignatius, Michael; Molokanova, Elena; Savtchenko, Alexei, Monitoring and manipulating cellular transmembrane potentials using nanostructures.
  142. Lee, Howard Wing Hoon; Keshavarz, Majid, Nanocomposite materials with engineered properties.
  143. Bureatea, Mihai A.; Empedocles, Stephen A.; Niu, Chunming; Scher, Erik C., Nanocomposites.
  144. Buretea, Mihai A.; Empedocles, Stephen A.; Niu, Chunming; Scher, Erik C., Nanocomposites.
  145. Buretea,Mihai; Empedocles,Stephen; Niu,Chunming; Scher,Erik C., Nanocomposites.
  146. Buretea,Mihai; Empedocles,Stephen; Niu,Chunming; Scher,Erik C., Nanocomposites.
  147. Parce, J. Wallace; Bernatis, Paul; Dubrow, Robert; Freeman, William P.; Gamoras, Joel; Kan, Shihai; Meisel, Andreas; Qian, Baixin; Whiteford, Jeffery A.; Ziebarth, Jonathan, Nanocrystal doped matrixes.
  148. Parce, J. Wallace; Bernatis, Paul; Dubrow, Robert; Freeman, William P.; Gamoras, Joel; Kan, Shihai; Meisel, Andreas; Qian, Baixin; Whiteford, Jeffery A.; Ziebarth, Jonathan, Nanocrystal doped matrixes.
  149. Parce, J. Wallace; Bernatis, Paul; Dubrow, Robert; Freeman, William P; Gamoras, Joel; Kan, Shihai; Meisel, Andreas; Qian, Baixin; Whiteford, Jeffery A; Ziebarth, Jonathan, Nanocrystal doped matrixes.
  150. Parce, J. Wallace; Chen, Jian; Dubrow, Robert S.; Freeman, William P.; Scher, Erik C.; Whiteford, Jeffery A., Nanocrystal doped matrixes.
  151. Parce,J. Wallace; Chen,Jian; Dubrow,Bob; Freeman,Bill; Scher,Erik C.; Whiteford,Jeffery A., Nanocrystal doped matrixes.
  152. Eisler, Hans J.; Sundar, Vikram C.; Walsh, Michael E.; Klimov, Victor I.; Bawendi, Moungi G.; Smith, Henry I., Nanocrystal structures.
  153. Eisler,Hans J.; Sundar,Vikram C.; Walsh,Michael E.; Klimov,Victor I.; Bawendi,Moungi G.; Smith,Henry I., Nanocrystal structures.
  154. Eisler,Hans J.; Sundar,Vikram C.; Walsh,Michael E.; Klimov,Victor I.; Bawendi,Moungi G.; Smith,Henry I., Nanocrystal structures.
  155. Naasani, Imad, Nanocrystals.
  156. Bawendi, Moungi G.; Kim, Sang-wook; Zimmer, John P., Nanocrystals including III-V semiconductors.
  157. Bawendi, Moungi G.; Kim, Sang-wook; Zimmer, John P., Nanocrystals including III-V semiconductors.
  158. Clough, Christopher R.; Breen, Craig; Steckel, Jonathan S.; Thamban, Ebenezer Selwyn Arun, Nanocrystals including a group IIIA element and a group VA element, method, composition, device and other products.
  159. Clough, Christopher R.; Breen, Craig; Steckel, Jonathan S.; Thamban, Ebenezer Selwyn Arun, Nanocrystals including a group IIIA element and a group VA element, method, composition, device and other products.
  160. Clough, Christopher R.; Breen, Craig; Steckel, Jonathan S.; Thambaw, Ebenezer Selwyn Arun, Nanocrystals including a group IIIA element and a group VA element, method, composition, device and other products.
  161. Welch, Eric; Bartel, Joseph; Tulsky, Eric; Treadway, Joseph; Chen, Yongfen, Nanocrystals with high extinction coefficients and methods of making and using such nanocrystals.
  162. Welch, Eric; Bartel, Joseph; Tulsky, Eric; Treadway, Joseph; Chen, Yongfen, Nanocrystals with high extinction coefficients and methods of making and using such nanocrystals.
  163. Chow, Calvin Y. H.; Dubrow, Robert, Nanofiber surface based capacitors.
  164. Chow,Calvin Y. H.; Dubrow,Robert S., Nanofiber surface based capacitors.
  165. Chow,Calvin Y. H.; Dubrow,Robert S., Nanofiber surface based capacitors.
  166. Chow,Calvin Y. H.; Dubrow,Robert S., Nanofiber surface based capacitors.
  167. Chow,Calvin Y.H.; Dubrow,Robert S., Nanofiber surface based capacitors.
  168. Rozhin, Oleksiy; Ferrari, Andrea; Milne, William Ireland, Nanomaterial polymer compositions and uses thereof.
  169. Scher, Erik C.; Buretea, Mihai; Chow, Calvin Y. H.; Empedocles, Stephen A.; Meisel, Andreas P.; Parce, J. Wallace, Nanostructure and nanocomposite based compositions and photovoltaic devices.
  170. Scher, Erik; Buretea, Mihai A.; Chow, Calvin; Empedocles, Stephen; Meisel, Andreas; Parce, J. Wallace, Nanostructure and nanocomposite based compositions and photovoltaic devices.
  171. Scher,Erik C.; Buretea,Mihai; Chow,Calvin Y. H.; Empedocles,Stephen A.; Meisel,Andreas P.; Parce,J. Wallace, Nanostructure and nanocomposite based compositions and photovoltaic devices.
  172. Scher,Erik C.; Buretea,Mihai; Empedocles,Stephen A., Nanostructure and nanocomposite based compositions and photovoltaic devices.
  173. Drndic, Marija; Fischbein, Michael D., Nanostructure assemblies, methods and devices thereof.
  174. Daniels, R. Hugh; Li, Esther; Rogers, Erica J., Nanostructure-enhanced platelet binding and hemostatic structures.
  175. Zhu, Yimin; Goldman, Jay L.; Qian, Baixin; Stefan, Ionel C., Nanostructured catalyst supports.
  176. Zhu, Yimin; Goldman, Jay L.; Qian, Baixin; Stefan, Ionel C., Nanostructured catalyst supports.
  177. Zhu, Yimin; Goldman, Jay L.; Qian, Baixin; Stefan, Ionel C., Nanostructured catalyst supports.
  178. Banin, Uri; Mokari, Taleb, Nanostructures and method for selective preparation.
  179. Empedocles, Stephen, Nanotechnology-enabled optoelectronics.
  180. Pereira, Cheri X. Y.; Lemmi, Francesco; Stumbo, David P., Nanowire dispersion compositions and uses thereof.
  181. Niu, Chunming; Qian, Baixin; Stefan, Ionel, Nanowire structures comprising carbon.
  182. Niu, Chunming; Chow, Calvin Y. H.; Empedocles, Stephen A.; Parce, J. Wallace, Nanowire-based membrane electrode assemblies for fuel cells.
  183. Niu, Chunming; Chow, Calvin Y. H.; Empedocles, Stephen A.; Parce, J. Wallace, Nanowire-based membrane electrode assemblies for fuel cells.
  184. Niu, Chunming; Chow, Calvin Y. H.; Empedocles, Stephen A.; Parce, J. Wallace, Nanowire-based membrane electrode assemblies for fuel cells.
  185. Niu, Chunming; Chow, Calvin Y. H.; Empedocles, Stephen A.; Parce, J. Wallace, Nanowire-based membrane electrode assemblies for fuel cells.
  186. Niu,Chunming; Chow,Calvin Y. H.; Empedocles,Stephen A.; Parce,J. Wallace, Nanowire-based membrane electrode assemblies for fuel cells.
  187. Bawendi, Moungi G.; Bulović, Vladimir; Coe-Sullivan, Seth A., Non-volatile memory device including semiconductor charge-trapping material particles.
  188. Klimov, Victor I.; Mikhailovski, Alexandre; Hollingsworth, Jennifer A.; Leatherdale, Catherine A.; Bawendi, Moungi G., Optical amplifiers and lasers.
  189. Coe-Sullivan, Seth; Cohen, Daniel; Ritter, John E.; Linton, John R., Optical components, systems including an optical component, and devices.
  190. Lee, Howard Wing Hoon; Chin, Alan Hap; Pfenninger, William Matthew, Optical devices with engineered nonlinear nanocomposite materials.
  191. Lee, Howard Wing Hoon; Chin, Alan Hap; Pfenninger, William Matthew, Optical devices with engineered nonlinear nanocomposite materials.
  192. Lee,Howard Wing Hoon; Chin,Alan Hap; Pfenninger,William Matthew, Optical devices with engineered nonlinear nanocomposite materials.
  193. Snee, Preston T.; Chan, Yin Thai; Nocera, Daniel G.; Bawendi, Moungi G., Optical feedback structures and methods of making.
  194. LoCascio, Michael; Ballinger, Clinton T.; Landry, Daniel P.; Raynolds, James E., Optical switch having a saturable absorber.
  195. Sargent,Edward; Bakoueva,Lioudmila; Musikhin,Sergei, Optically-regulated optical emission using colloidal quantum dot nanocrystals.
  196. Whiteford, Jeffery A.; Buretea, Mihai A.; Nguyen, Linh Hong; Scher, Erik, Organic species that facilitate charge transfer to or from nanostructures.
  197. Whiteford, Jeffery A.; Buretea, Mihai A.; Nguyen, Linh; Scher, Erik, Organic species that facilitate charge transfer to or from nanostructures.
  198. Whiteford, Jeffery A.; Buretea, Mihai A.; Scher, Erik, Organic species that facilitate charge transfer to or from nanostructures.
  199. Whiteford, Jeffery A.; Buretea, Mihai A.; Scher, Erik C., Organic species that facilitate charge transfer to or from nanostructures.
  200. Whiteford,Jeffery A.; Buretea,Mihai A.; Scher,Erik C., Organic species that facilitate charge transfer to or from nanostructures.
  201. Weiss Shimon ; Bruchez ; Jr. Marcel ; Alivisatos Paul, Organo Luminescent semiconductor nanocrystal probes for biological applications and process for making and using such p.
  202. Shimon Weiss ; Marcel Bruchez, Jr. ; Paul Alivisatos, Organo luminescent semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  203. Weiss, Shimon; Bruchez, Jr., Marcel; Alivisatos, Paul, Organo luminescent semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  204. Weiss, Shimon; Bruchez, Jr., Marcel; Alivisatos, Paul, Organo luminescent semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  205. Weiss,Shimon; Bruchez, Jr.,Marcel; Alivisatos,Paul, Organo luminescent semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  206. Weiss,Shimon; Bruchez, Jr.,Marcel; Alivisatos,Paul, Organo luminescent semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  207. Whiteford, Jeffery A.; Buretea, Mihai; Scher, Erik; Empedocles, Steve; Meisel, Andreas, Oriented nanostructures and methods of preparing.
  208. Dutta, Partha, Passivated nanoparticles, method of fabrication thereof, and devices incorporating nanoparticles.
  209. Dutta, Partha, Passivated nanoparticles, method of fabrication thereof, and devices incorporating nanoparticles.
  210. Dutta,Partha, Passivated nanoparticles, method of fabrication thereof, and devices incorporating nanoparticles.
  211. Weiss, Shimon; Tsay, James M.; Pinaud, Fabien; Doose, Soren, Peptide-coated nanoparticles with graded shell compositions.
  212. Chen, Gang; Fuchs, Dan; Olsson, Ylva; Rapaport, Ronen; Sundar, Vikram, Polymeric compositions comprising quantum dots, optical devices comprising these compositions and methods for preparing same.
  213. Chen,Gang; Fuchs,Dan; Olsson,Ylva; Rapaport,Ronen; Sundar,Vikram, Polymeric compositions comprising quantum dots, optical devices comprising these compositions and methods for preparing same.
  214. Dubrow, Robert S.; Niu, Chunming, Porous substrates, articles, systems and compositions comprising nanofibers and methods of their use and production.
  215. Dubrow, Robert; Casillas, Carlos Guillermo; Freeman, William P.; Goldman, Jay L.; Hardev, Veeral Dilip; Leon, Francisco; Niu, Chunming; Pereira, Cheri X. Y., Porous substrates, articles, systems and compositions comprising nanofibers and methods of their use and production.
  216. Whiteford, Jeffery A.; Buretea, Mihai; Freeman, William P.; Meisel, Andreas; Min, Kyu S.; Parce, J. Wallace; Scher, Erik, Post-deposition encapsulation of nanostructures: compositions, devices and systems incorporating same.
  217. Whiteford,Jeffery A.; Buretea,Mihai; Freeman,William P.; Meisel,Andreas; Min,Kyu S.; Parce,J. Wallace; Scher,Erik, Post-deposition encapsulation of nanostructures: compositions, devices and systems incorporating same.
  218. Bawendi, Moungi; Stott, Nathan E., Preparation of nanocrystallites.
  219. Bawendi, Moungi; Stott, Nathan E., Preparation of nanocrystallites.
  220. Bawendi,Moungi; Stott,Nathan E., Preparation of nanocrystallites.
  221. Bartel, Joseph; Chen, Yongfen; Lermer, Noah; Carter, Timothy; Sweeney, Scott; Teters, Chad; Huang, Wenxi, Preparation of nanocrystals with mixtures of organic ligands.
  222. Alivisatos A. Paul ; Peng Xiaogang ; Manna Liberato,ITX, Process for forming shaped group II-VI semiconductor nanocrystals, and product formed using process.
  223. Alivisatos A. Paul ; Peng Xiaogang ; Manna Liberato,ITX, Process for forming shaped group III-V semiconductor nanocrystals, and product formed using process.
  224. Whiteford, Jeffery A.; Buretea, Mihai A.; Freeman, William P.; Parce, J. Wallace; Qian, Baixin; Scher, Erik C., Process for group 10 metal nanostructure synthesis and compositions made using same.
  225. Scher, Erik C.; Buretea, Mihai A.; Freeman, William P.; Gamoras, Joel; Qian, Baixin; Whiteford, Jeffrey A., Process for group III-IV semiconductor nanostructure synthesis and compositions made using same.
  226. Scher, Erik C.; Buretea, Mihai A.; Freeman, William P.; Gamoras, Joel; Qian, Baixin; Whiteford, Jeffery A., Process for group III-V semiconductor nanostructure synthesis and compositions made using same.
  227. Scher, Erik C.; Buretea, Mihai A.; Freeman, William P.; Gamoras, Joel; Qian, Baixin; Whiteford, Jeffery A., Process for group III-V semiconductor nanostructure synthesis and compositions made using same.
  228. Scher, Erik C.; Buretea, Mihai A.; Freeman, William P.; Gamoras, Joel; Qian, Baixin; Whiteford, Jeffery A., Process for group III-V semiconductor nanostructure synthesis and compositions made using same.
  229. Scher, Erik C.; Buretea, Mihai A.; Freeman, William P.; Gamoras, Joel; Qian, Baixin; Whiteford, Jeffrey A., Process for group III-V semiconductor nanostructure synthesis and compositions made using same.
  230. Scher, Erik C.; Buretea, Mihai A.; Freeman, William P.; Gamoras, Joel; Qian, Balxin; Whiteford, Jeffrey A., Process for group III-V semiconductor nanostructure synthesis and compositions made using same.
  231. Lucey,Derrick W.; MacRae,David J.; Prasad,Paras N.; Beachley, Jr.,Orville T., Process for producing semiconductor nanocrystal cores, core-shell, core-buffer-shell, and multiple layer systems in a non-coordinating solvent utilizing in situ surfactant generation.
  232. Mintz, Nathan M.; Spariosu, Kalin, Quantum dot based radiation source and radiometric calibrator using the same.
  233. Sargent, Edward Hartley; Clifford, Jason Paul; Konstantatos, Gerasimos; Howard, Ian; Klem, Ethan J. D.; Levina, Larissa, Quantum dot optical devices with enhanced gain and sensitivity and methods of making same.
  234. Sargent, Edward Hartley; Clifford, Jason Paul; Konstantatos, Gerasimos; Howard, Ian; Klem, Ethan J. D.; Levina, Larissa, Quantum dot optical devices with enhanced gain and sensitivity and methods of making same.
  235. Sargent, Edward Hartley; Clifford, Jason Paul; Konstantatos, Gerasimos; Howard, Ian; Klem, Ethan J. D.; Levina, Larissa, Quantum dot optical devices with enhanced gain and sensitivity and methods of making same.
  236. Sargent, Edward Hartley; Clifford, Jason Paul; Konstantatos, Gerasimos; Howard, Ian; Klem, Ethan J. D.; Levina, Larissa, Quantum dot optical devices with enhanced gain and sensitivity and methods of making same.
  237. Sargent, Edward Hartley; Clifford, Jason Paul; Konstantatos, Gerasimos; Howard, Ian; Klem, Ethan J. D.; Levina, Larissa, Quantum dot optical devices with enhanced gain and sensitivity and methods of making same.
  238. Sargent, Edward; Clifford, Jason; Konstantatos, Gerasimos; Howard, Ian; Klem, Ethan J. D.; Levina, Larissa, Quantum dot optical devices with enhanced gain and sensitivity and methods of making same.
  239. Sargent, Edward; Clifford, Jason; Konstantatos, Gerasimos; Howard, Ian; Klem, Ethan J. D.; Levina, Larissa, Quantum dot optical devices with enhanced gain and sensitivity and methods of making same.
  240. Sargent, Edward; Clifford, Jason; Konstantatos, Gerasimos; Howard, Ian; Klem, Ethan J. D.; Levina, Larissa, Quantum dot optical devices with enhanced gain and sensitivity and methods of making same.
  241. Sargent, Edward; Clifford, Jason; Konstantatos, Gerasimos; Howard, Ian; Klem, Ethan J. D.; Levina, Larissa, Quantum dot optical devices with enhanced gain and sensitivity and methods of making same.
  242. Bawendi, Moungi G.; Heine, Jason; Jensen, Klavs F.; Miller, Jeffrey N.; Moon, Ronald L., Quantum dot white and colored light emitting diodes.
  243. Bawendi, Moungi G.; Heine, Jason; Jensen, Klavs F.; Miller, Jeffrey N.; Moon, Ronald L., Quantum dot white and colored light emitting diodes.
  244. Moungi G. Bawendi ; Jason Heine ; Klavs F. Jensen ; Jeffrey N. Miller ; Ronald L. Moon, Quantum dot white and colored light emitting diodes.
  245. Bawendi, Moungi E.; Heine, Jason; Jensen, Klavs F.; Miller, Jeffrey N.; Moon, Ronald L., Quantum dot white and colored light-emitting devices.
  246. Bawendi, Moungi G.; Heine, Jason; Jensen, Klavs F.; Miller, Jeffrey N.; Moon, Ronald L., Quantum dot white and colored light-emitting devices.
  247. Bawendi, Moungi G.; Heine, Jason; Jensen, Klavs F.; Miller, Jeffrey N.; Moon, Ronald L., Quantum dot white and colored light-emitting devices.
  248. Bawendi,Moungi E.; Heine,Jason; Jensen,Klavs F.; Miller,Jeffrey N.; Moon,Ronald L., Quantum dot white and colored light-emitting devices.
  249. Klem, Ethan; Lewis, John, Quantum dot-fullerene junction based photodetectors.
  250. Klem, Ethan; Lewis, John, Quantum dot-fullerene junction based photodetectors.
  251. Klem, Ethan; Lewis, John, Quantum dot-fullerene junction optoelectronic devices.
  252. Lee,Howard Wing Hoon, Quantum dots of group IV semiconductor materials.
  253. Lee,Howard Wing Hoon, Quantum dots of group IV semiconductor materials.
  254. Lee,Howard Wing Hoon, Quantum dots, nanocomposite materials with quantum dots, devices with quantum dots, and related fabrication methods.
  255. LoCascio,Michael; Ballinger,Clinton T.; Landry,Daniel P.; Depoy,David, Reconfigurable optical add/drop filter.
  256. Daniels, R. Hugh; Dubrow, Robert S.; Enzerink, Robert; Li, Esther; Sahi, Vijendra; Goldman, Jay L.; Parce, J. Wallace, Resorbable nanoenhanced hemostatic structures and bandage materials.
  257. Stumbo, David P.; Pan, Yaoling; Grigoropoulos, Costas P.; Misra, Nipun, Selective processing of semiconductor nanowires by polarized visible radiation.
  258. Alivisatos, A. Paul; Li, Liang-shi, Semiconductor liquid crystal composition and methods for making the same.
  259. Sundar,Vikram C.; Eisler,Hans J.; Bawendi,Moungi G., Semiconductor nanocrystal composite.
  260. Lawandy Nabil M., Semiconductor nanocrystal display materials and display apparatus employing same.
  261. Halpert,Jonathan E.; Bawendi,Moungi G., Semiconductor nanocrystal heterostructures.
  262. Kim, Sungjee; Bawendi, Moungi G., Semiconductor nanocrystal heterostructures.
  263. Kim,Sungjee; Bawendi,Moungi G., Semiconductor nanocrystal heterostructures having specific charge carrier confinement.
  264. Weiss Shimon ; Bruchez Marcel ; Alivisatos Paul, Semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  265. Weiss, Shimon; Bruchez, Marcel; Alivisatos, Paul, Semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  266. Weiss, Shimon; Bruchez, Marcel; Alivisatos, Paul, Semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  267. Weiss, Shimon; Bruchez, Marcel; Alivisatos, Paul, Semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  268. Weiss, Shimon; Bruchez, Marcel; Alivisatos, Paul A., Semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  269. Ramprasad, Dorai, Semiconductor nanocrystals and compositions and devices including same.
  270. Ramprasad, Dorai, Semiconductor nanocrystals and compositions and devices including same.
  271. Ramprasad, Dorai; Breen, Craig; Steckel, Jonathan S., Semiconductor nanocrystals and compositions and devices including same.
  272. Ramprasad, Dorai; Breen, Craig; Steckel, Jonathan S., Semiconductor nanocrystals and compositions and devices including same.
  273. Ramprasad, Dorai; Breen, Craig; Steckel, Jonathan S., Semiconductor nanocrystals and compositions and devices including same.
  274. Bawendi, Moungi G.; Jensen, Klavs F., Semiconductor nanocrystals for inventory control.
  275. Alivisatos, A. Paul; Dittmer, Janke J.; Huynh, Wendy U.; Milliron, Delia, Semiconductor-nanocrystal/conjugated polymer thin films.
  276. Alivisatos, A. Paul; Dittmer, Janke J.; Huynh, Wendy U.; Milliron, Delia, Semiconductor-nanocrystal/conjugated polymer thin films.
  277. Alivisatos, A. Paul; Scher, Erik C.; Manna, Liberato, Shaped nanocrystal particles and methods for making the same.
  278. Alivisatos, A. Paul; Scher, Erik C.; Manna, Liberato, Shaped nanocrystal particles and methods for making the same.
  279. Alivisatos, A. Paul; Scher, Erik C.; Manna, Liberato, Shaped nanocrystal particles and methods for making the same.
  280. Alivisatos,A. Paul; Sher,Eric C.; Manna,Liberato, Shaped nanocrystal particles and methods for working the same.
  281. Freeman, William P.; Furuta, Paul T.; Guo, Wendy; Dubrow, Robert; Parce, J. Wallace, Silicone ligands for stabilizing quantum dot films.
  282. Coe-Sullivan, Seth; Linton, John R.; Sadasivan, Sridhar; Squires, Emily M., Solid state lighting devices including quantum confined semiconductor nanoparticles, an optical component for a solid state lighting device, and methods.
  283. Coe-Sullivan, Seth; Linton, John R.; Sadasivan, Sridhar; Squires, Emily M.; Bawendi, Moungi G., Solid state lighting devices including quantum confined semiconductor nanoparticles, an optical component for a solid state lighting device, and methods.
  284. Bawendi, Moungi G.; Kim, Sungjee; Stott, Nathan E., Stabilized semiconductor nanocrystals.
  285. Bawendi,Moungi G.; Kim,Sungjee; Stott,Nathan E., Stabilized semiconductor nanocrystals.
  286. Bawendi, Moungi G.; Kim, Sungjee; Stott, Nathan E., Stabilized semiconductor nanocrystals comprising a coating of polydentate ligand.
  287. Bartel, Joseph; Chen, Yongfen; Tulsky, Eric; Treadway, Joseph, Stable indium-containing semiconductor nanocrystals.
  288. Bartel, Joseph; Chen, Yongfen; Tulsky, Eric; Treadway, Joseph, Stable indium-containing semiconductor nanocrystals.
  289. Treadway, Joseph; Tulsky, Eric; Welch, Eric, Stable nanoparticles and methods of making and using such particles.
  290. Dubrow, Robert S., Structures, systems and methods for joining articles and materials and uses therefor.
  291. Dubrow,Robert, Structures, systems and methods for joining articles and materials and uses therefor.
  292. Dubrow,Robert, Structures, systems and methods for joining articles and materials and uses therefor.
  293. Dubrow,Robert, Structures, systems and methods for joining articles and materials and uses therefor.
  294. Naasani, Imad, Synthesis of highly luminescent colloidal particles.
  295. Haubold,Stephan; Haase,Markus; Riwotzki,Karsten; Weller,Horst; Meyssamy,Heike; Ibarra,Fernando, Synthesis of nanoparticles.
  296. Mountziaris, Triantafillos J.; Alexandridis, Paschalis, Synthesis of nanoparticles by an emulsion-gas contacting process.
  297. Alexandridis, Paschalis; Karanikolos, Georgios N.; Mountziaris, Triantafillos J., Synthesis of nanostructured materials using liquid crystalline templates.
  298. Buretea, Mihai A.; Chen, Jian; Chow, Calvin Y. H.; Niu, Chunming; Pan, Yaoling; Parce, J. Wallace; Romano, Linda T.; Stumbo, David P., System and process for producing nanowire composites and electronic substrates therefrom.
  299. Buretea,Mihai A.; Chen,Jian; Chow,Calvin Y. H.; Niu,Chunming; Pan,Yaoling; Parce,J. Wallace; Romano,Linda T.; Stumbo,David P., System and process for producing nanowire composites and electronic substrates therefrom.
  300. Buretea,Mihai; Chen,Jian; Chow,Calvin; Niu,Chunming; Pan,Yaoling; Parce,J. Wallace; Romano,Linda T.; Stumbo,David, System and process for producing nanowire composites and electronic substrates therefrom.
  301. Lemmi, Francesco; Stumbo, David P., Systems and methods for harvesting and integrating nanowires.
  302. Romano,Linda T.; Chen,Jian; Duan,Xiangfeng; Dubrow,Robert S.; Empedocles,Stephen A.; Goldman,Jay L.; Hamilton,James M.; Heald,David L.; Lemmi,Francesco; Niu,Chunming; Pan,Yaoling; Pontis,George; Sahi,Vijendra; Scher,Erik C.; Stumbo,David P.; Whiteford,Jeffery A., Systems and methods for harvesting and integrating nanowires.
  303. Duan, Xiangfeng; Bernatis, Paul; Fischer-Colbrie, Alice; Hamilton, James M.; Lemmi, Francesco; Pan, Yaoling; Parce, J. Wallace; Pereira, Cheri X. Y.; Stumbo, David P., Systems and methods for harvesting and reducing contamination in nanowires.
  304. Taylor, David, Systems and methods for nanowire growth.
  305. Mostarshed, Shahriar; Romano, Linda T., Systems and methods for nanowire growth and harvesting.
  306. Pan,Yaoling; Duan,Xiangfeng; Dubrow,Robert S.; Goldman,Jay L.; Mostarshed,Shahriar; Niu,Chunming; Romano,Linda T.; Stumbo,Dave, Systems and methods for nanowire growth and harvesting.
  307. Pan,Yaoling; Duan,Xiangfeng; Dubrow,Robert S.; Goldman,Jay L.; Mostarshed,Shahriar; Niu,Chunming; Romano,Linda T.; Stumbo,Dave, Systems and methods for nanowire growth and harvesting.
  308. Niu, Chunming; Goldman, Jay L.; Duan, Xiangfeng; Sahi, Vijendra, Systems and methods for nanowire growth and manufacturing.
  309. Bawendi,Moungi G.; Mikulec,Frederic V.; Kim,Sungjee, Tellurium-containing nanocrystalline materials.
  310. Cavanaugh, Shanti A.; Crowley, Mark A.; Spatz, Neil J., Thermal control system for liquid crystal cell.
  311. Sargent, Edward; McDonald, Steve; Zhang, Shiguo; Levina, Larissa; Konstantatos, Gerasimos; Cyr, Paul, Three-dimensional bicontinuous heterostructures, a method of making them, and their application in quantum dot-polymer nanocomposite photodetectors and photovoltaics.
  312. Sargent, Edward; McDonald, Steven Ashworth; Zhang, Shiguo; Levina, Larissa; Konstantatos, Gerasimos; Cyr, Paul, Three-dimensional bicontinuous heterostructures, method of making, and their application in quantum dot-polymer nanocomposite photodetectors and photovoltaics.
  313. Sargent, Edward; McDonald, Steven Ashworth; Zhang, Shiguo; Levina, Larissa; Konstantatos, Gerasimos; Cyr, Paul, Three-dimensional bicontinuous heterostructures, method of making, and their application in quantum dot-polymer nanocomposite photodetectors and photovoltaics.
  314. Curley, John J.; Slugocki, Tim; Hotz, Charlie, Use of heteroleptic indium hydroxides as precursors for INP nanocrystals.
  315. Bawendi Moungi G. ; Mikulec Frederick V. ; Lee Jin-Kyu,KRX, Water-soluble fluorescent nanocrystals.
  316. Moungi G. Bawendi ; Frederick V. Mikulec ; Jin-Kyu Lee KR, Water-soluble fluorescent nanocrystals.
  317. Bawendi Moungi G. ; Mikulec Frederic V. ; Lee Jin-Kyu,KRX, Water-soluble fluorescent semiconductor nanocrystals.
  318. Shuming Nie ; Warren C. W. Chan ; Steven R. Emory, Water-soluble luminescent quantum dots and biomolecular conjugates thereof and related compositions and method of use.
  319. Nie,Shuming; Chan,Warren C. W.; Emory,Stephen, Water-soluble luminescent quantum dots and biomolecular conjugates thereof and related compositions and methods of use.
  320. Moungi G. Bawendi ; Frederick V. Mikulec ; Jin-Kyu Lee KR, Water-soluble thiol-capped nanocrystals.
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