$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

[미국특허] Highly luminescent color-selective nanocrystalline materials 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C09K-011/00
  • C09K-011/88
  • B82Y-030/00
  • C01B-017/20
  • C01B-019/00
  • C07F-009/22
  • C07F-009/53
  • C09K-011/02
  • C09K-011/56
  • C09K-011/89
  • C30B-007/00
  • C30B-007/14
  • C30B-029/46
  • C30B-029/48
  • C30B-029/60
  • B82Y-020/00
출원번호 US-0682070 (2015-04-08)
등록번호 US-9790424 (2017-10-17)
발명자 / 주소
  • Bawendi, Moungi G.
  • Jensen, Klavs F.
  • Dabbousi, Bashir O.
  • Rodriguez-Viejo, Javier
  • Mikulec, Frederic Victor
출원인 / 주소
  • MASSACHUSETTS INSTITUTE OF TECHNOLOGY
대리인 / 주소
    Steptoe & Johnson LLP
인용정보 피인용 횟수 : 0  인용 특허 : 184

초록

A nanocrystal capable of light emission includes a nanoparticle having photoluminescence having quantum yields of greater than 30%.

대표청구항

1. A monodisperse population of nanocrystals comprising: a plurality of nanocrystal particles, wherein each particle includes a core including a first semiconductor material and an overcoating including a second semiconductor material deposited on the core;wherein the first semiconductor material an

이 특허에 인용된 특허 (184) 인용/피인용 타임라인 분석

  1. Li Panjian, Bioactive ceramic coating and method.
  2. Bawendi Moungi G. ; Mikulec Frederic V. ; Sundar Vikram C., Biological applications of quantum dots.
  3. Bawendi Moungi G. ; Mikulec Frederick V. ; Sundar Vikram C., Biological applications of quantum dots.
  4. Bawendi, Moungi G.; Sundar, Vikram C.; Mikulec, Frederic V., Biological applications of quantum dots.
  5. Bawendi,Moungi G; Sundar,Vikram C; Mikulec,Frederic V, Biological applications of quantum dots.
  6. Lawton Carl ; Conroy Suzanne, Biomolecular synthesis of quantum dot composites.
  7. Smith Tammy Lynn ; Baughman Ray ; Martin Mary Frances ; Choi Wonsik ; Moulton Jeffrey, Colored articles and compositions and methods for their fabrication.
  8. Still W. Clark (Clinton NY) Wigler Michael H. (Lloyd Harbor NY) Ohlmeyer Michael H. J. (Plainsboro NJ) Dillard Lawrence W. (Plainsboro NJ) Reader John C. (Princeton NJ), Complex combinatorial chemical libraries encoded with tags.
  9. Still W. Clark ; Wigler Michael H. ; Ohlmeyer Michael H.J. ; Dillard Lawrence W. ; Reader John C., Complex combinatorial chemical libraries encoded with tags.
  10. Bhargava Rameshwar Nath, Composite nanophosphor screen for detecting radiation.
  11. Barbera-Guillem Emilio ; Thurston Marlin O., Continuous flow process for production of semiconductor nanocrystals.
  12. Ohkawa Kazuhiro (Hirakata JPX) Mitsuyu Tsuneo (Hirakata JPX), Crystal-growth method and semiconductor device production method using the crystal-growth method.
  13. Benaron David A., Detecting, localizing, and targeting internal sites in vivo using optical contrast agents.
  14. Robert F. Mattrey, Diagnostic imaging of lymph structures.
  15. Yagyu Mineto,JPX, Driving method for display apparatus.
  16. Miller Albert E. ; Bandyopadhyay Supriyo, Electrochemical synthesis of quasi-periodic quantum dot and nanostructure arrays.
  17. Alivisatos A. Paul (Oakland CA) Colvin Vickie (Springfield NJ), Electroluminescent devices formed using semiconductor nanocrystals as an electron transport media and method of making s.
  18. Tohda Takao (Ikoma JPX) Matsuoka Tomizo (Neyagawa JPX) Fujita Yosuke (Ashiya JPX) Abe Atsushi (Ikoma JPX) Nitta Tsuneharu (Katano JPX), Electroluminescent display device.
  19. Weiss, Shimon; Schlamp, Michael C.; Alivisatos, A. Paul, Electronic displays using optically pumped luminescent semiconductor nanocrystals.
  20. Walt David R. ; Michael Karri Lynn, Fiber optic sensor with encoded microspheres.
  21. Lippa Arnold S. (Franklin Lakes NJ), Fluorescence immunoassay involving energy transfer between two fluorophores.
  22. Ullman Edwin F. (Atherton CA) Schwarzberg Moshe (Palo Alto CA), Fluorescence quenching with immunological pairs in immunoassays.
  23. Jaskie James E. (Scottsdale AZ), Fluorescent device with quantum contained particle screen.
  24. Hinshaw Jerald C. (Ogden UT) Toner John L. (Webster NY) Reynolds George A. (Rochester NY), Fluorescent labels for immunoassay.
  25. Barbera-Guillem, Emilio; Castro, Stephanie L., Fluorescent nanocrystal-embedded microspheres for fluorescence analyses.
  26. Barbera-Guillem Emilio, Fluorescent nanocrystal-labeled microspheres for fluorescence analyses.
  27. Boguslaski Robert C. (Elkhart IN) Carrico Robert J. (Elkhart IN), Fluorescer-labeled specific binding assays.
  28. Yang Jianping ; Ratna Banahalli R., Formation of nanocrystalline semiconductor particles within a bicontinuous cubic phase.
  29. Jain, Faquir C.; Papadimitrakopoulos, Fotios, Full color display structures using pseudomorphic cladded quantum dot nanophosphor thin films.
  30. Castro Stephanie L. ; Barbera-Guillem Emilio, Functionalized nanocrystals and their use in detection systems.
  31. Huston Alan L. (8501 Fairburn Dr. Springfield VA 22152) Justus Brian L. (6609 Holford La. Springfield VA 22152), Glass matrix doped with activated luminescent nanocrystalline particles.
  32. Cheng Hwa (Woodbury MN) DePuydt James M. (St. Paul MN) Haase Michael A. (Woodbury MN) Qiu Jun (Woodbury MN), Growth of II VI laser diodes with quantum wells by atomic layer epitaxy and migration enhanced epitaxy.
  33. Oraevsky,Alexander A.; Henrichs,Paul M., High contrast optoacoustic imaging using nanoparticles.
  34. Pavlidis Theodosios (Setauket NY) Wang Yajium P. (Port Jefferson Station NY) Swartz Jerome (Old Field NY), High density two-dimensional bar code symbol.
  35. Kempe Maria,SEX ; Barany George, Highly cross-linked polymeric supports.
  36. Bawendi, Moungi; Jensen, Klaus F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color selective nanocrystalline materials.
  37. 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.
  38. Bawendi Moungi ; Jensen Klavs F. ; Dabbousi Bashir O.,SAX ; Rodriguez-Viejo Xavier,ESX ; Mikulec Frederic Victor, Highly luminescent color-selective nano-crystalline materials.
  39. Bawendi, Moungi G.; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  40. Bawendi, Moungi G.; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  41. Bawendi, Moungi; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  42. Bawendi, Moungi; Jensen, Klavs F.; Dabbousi, Bashir O.; Rodriguez-Viejo, Javier; Mikulec, Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  43. Bawendi,Moungi; Jensen,Klavs F.; Dabbousi,Bashir O.; Rodriguez Viejo,Javier; Mikulec,Frederic Victor, Highly luminescent color-selective nanocrystalline materials.
  44. Hansen W. Peter ; Krauledat Petra B., Homogeneous binding assay.
  45. Cass Anthony,GBX ; Valat Christophe,GBX ; Steel Adam, Immobilized nucleic acid hybridization reagent and method.
  46. Anderson, George P.; Mattoussi, Hedi; Mauro, J. Matthew; Bawendi, Moungi G.; Sundar, Vikram C., Inorganic particle conjugates.
  47. Kane Robert C. (Woodstock IL), Integrally controlled field emission flat display device.
  48. Bawendi, Moungi G.; Jensen, Klavs F., Inventory control.
  49. Bawendi, Moungi G.; Jensen, Klavs F., Inventory control.
  50. Bhargava Rameshwar N. (5 Morningside Ct. Ossining NY 10562), Light emitting device.
  51. Soules Thomas Frederick ; Beers William Winder ; Srivastava Alok Mani ; Levinson Lionel Monty ; Duggal Anil Raj, Light emitting device with phosphor composition.
  52. Fujita Shinobu,JPX ; Kurobe Atsushi,JPX, Light emitting semiconductor device using nanocrystals.
  53. Klaveness Jo,NOX ; Fuglass Bjorn,NOX ; Rongved P.ang.al,NOX ; Johannesen Edvin,NOX ; Henrichs Paul Mark ; Heinrich Wolfgang Hans ; Bacon Edward Richard ; Toner John Luke ; McIntire Gregory Lynn ; Des, Light imaging contrast agents.
  54. Chittibabu, Kethinni; Gaudiana, Russell, Low temperature interconnection of nanoparticles.
  55. Alivisatos A. Paul (Berkeley CA) Goldstein Avery N. (Oakland CA), Low temperature thin films formed from nanocrystal precursors.
  56. Baker Ralph T. (Wilmington DE), Low-temperature synthesis of group III-group V semiconductors.
  57. Ohashi Yutaka (Fujisawa) Nitta Atsuhiko (Yokohama) Fukuda Nobuhiro (Yokohama) Waki Hiroshi (Mitaka JPX), Luminescence element.
  58. Treadway, Joseph A.; Zehnder, Donald A.; Schrier, Marc D., Luminescent nanoparticles and methods for their preparation.
  59. Goldenberg Milton D. (Short Hills NJ), Lymphographic and organ imaging method and kit.
  60. Dobson Peter James,GBX ; Salata Oleg Viktorovich,GBX ; Hull Peter James,GBX ; Hutchison John Laird,GBX, Making particles of uniform size.
  61. Dannenhauer Fritz,DEX ; Holdik Karl,DEX, Marking for objects painted with an effect paint and process for producing the marking.
  62. Frangioni,John V.; Bawendi,Moungi G.; Kim,Sungjee; Lim,Yong Taik, Materials and methods for near-infrared and infrared lymph node mapping.
  63. Toida, Masahiro, Method and apparatus for obtaining an optical tomographic image of a sentinel lymph node.
  64. Fulton R. Jerrold, Method and compositions for flow cytometric determination of DNA sequences.
  65. Jensen John E. (Newbury Park CA), Method for forming gallium arsenide from thin solid films of gallium-arsenic complexes.
  66. Miyakawa Atsuo (Hamamatsu JPX) Kamiya Kiyoshi (Hamamatsu JPX) Hirano Masahiko (Hamamatsu JPX), Method for measurement of intracellular ion concentration using fluorescence probe dyes.
  67. Bawendi,Moungi; Empedocles,Stephen, Method for measuring 3-dimensional orientation of a photoactive moiety.
  68. Clark Noel A. (Boulder CO) Douglas Kenneth (Boulder CO) Rothschild Kenneth J. (Newton MA), Method for parallel fabrication of nanometer scale multi-device structures.
  69. Masaru Ihara JP; Igarashi Takahiro JP; Tsuneo Kusunoki JP; Katsutoshi Ohno JP; Mamoru Senna JP; Tetsuhiko Isobe JP; Miho Konishi JP, Method for producing light-emitting substance.
  70. Murray Christopher Bruce ; Sun Shouheng, Method for producing nanoparticles of transition metals.
  71. Robb, Gary M.; Pettit, William H., Method for quick start-up of a fuel processing system using controlled staged oxidation.
  72. Wilcoxon Jess P. (Albuquerque NM), Method for the preparation of metal colloids in inverse micelles and product preferred by the method.
  73. 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.
  74. Chapple-Sokol Jonathan D. (Poughkeepsie NY) Subbanna Seshadri (Hopewell Junction NY) Tejwani Manu J. (Yorktown Heighs NY), Method of making semiconductor quantum dot light emitting/detecting devices.
  75. Gallagher Dennis (Stamford CT) Bhargava Rameshwar (Ossining NY) Racz Jacqueline (Ossining NY), Method of manufacturing encapsulated doped particles.
  76. Wells Richard L. (Durham NC) Kher Shreyas S. (Durham NC), Method of synthesizing III-V semiconductor nanocrystals.
  77. David Lawrence D. (Wappingers Falls NY), Method of synthesizing amorphous group IIIA-group VA compounds.
  78. Unger Evan C., Methods for diagnostic imaging using a renal contrast agent and a vasodilator.
  79. Dower William J. ; Barrett Ronald W. ; Gallop Mark A., Methods of synthesizing diverse collections of oligomers.
  80. Weiss, Shimon; Bruchez, Marcel; Alivisatos, Paul, Methods of use of semiconductor nanocrystal probes for treating a material.
  81. Marcel P. Bruchez, Jr. ; Jennifer H. Lai ; Vince E. Phillips ; Andrew R. Watson ; Edith Y. Wong, Methods of using semiconductor nanocrystals in bead-based nucleic acid assays.
  82. Lee Huai-Chuan (1063 Cornell Ave. Albany CA 94706), Moving disks made of semiconductor nanocrystallite embedded glass.
  83. Kresse Mayk (Berlin DEX) Lawaczeck Rudiger (Berlin DEX) Pfefferer Detlef (Berlin DEX), Nanocrystalline magnetic iron oxide particles-method for preparation and use in medical diagnostics and therapy.
  84. Lieber Charles M. ; Wong Stanislaus S. ; Woolley Adam T. ; Joselevich Ernesto, Nanometer-scale microscopy probes.
  85. Chen,I Wei; Choi,Hoon, Nanometer-sized carrier medium.
  86. Jacobson Joseph M. ; Hubert Brian N. ; Ridley Brent ; Nivi Babak ; Fuller Sawyer, Nanoparticle-based electrical, chemical, and mechanical structures and methods of making same.
  87. Ewart Thomas G.,CAX ; Bogle Gavin T.,CAX, Nanoparticles biosensor.
  88. Chad A. Mirkin ; Robert L. Letsinger ; Robert C. Mucic ; James J. Storhoff ; Robert Elghanian, Nanoparticles having oligonucleotides attached thereto and uses therefor.
  89. Chad A. Mirkin ; Robert L. Letsinger ; Robert C. Mucic ; James J. Storhoff ; Robert Elghanian, Nanoparticles having oligonucleotides attached thereto and uses therefor.
  90. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert, Nanoparticles having oligonucleotides attached thereto and uses therefor.
  91. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  92. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  93. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  94. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  95. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  96. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  97. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  98. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  99. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  100. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  101. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  102. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  103. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  104. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  105. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  106. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  107. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  108. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  109. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  110. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  111. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A.; Garimella, Viswanadham; Li, Zhi, Nanoparticles having oligonucleotides attached thereto and uses therefor.
  112. Mirkin, Chad A.; Letsinger, Robert L.; Park, So-Jung, Nanoparticles having oligonucleotides attached thereto and uses therefor.
  113. Mirkin,Chad A.; Letsinger,Robert L.; Li,Zhi, Nanoparticles having oligonucleotides attached thereto and uses therefor.
  114. Mirkin,Chad A.; Letsinger,Robert L.; Mucic,Robert C.; Storhoff,James J.; Elghanian,Robert; Taton,Thomas A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  115. Mirkin,Chad A.; Letsinger,Robert L.; Mucic,Robert C.; Storhoff,James J.; Elghanian,Robert; Taton,Thomas Andrew, Nanoparticles having oligonucleotides attached thereto and uses therefor.
  116. Mirkin,Chad A.; Letsinger,Robert L.; Mucic,Robert C.; Storhoff,James J.; Elghanian,Robert; Taton,Thomas Andrew, Nanoparticles having oligonucleotides attached thereto and uses therefor.
  117. Mirkin,Chad A.; Letsinger,Robert L.; Mucic,Robert C.; Storhoff,James J.; Elghanian,Robert; Taton,Thomas Andrew; Garimella,Viswanadham; Li,Zhi; Park,So Jung; Lu,Gang, Nanoparticles having oligonucleotides attached thereto and uses therefor.
  118. Mirkin,Chad A.; Letsinger,Robert L.; Park,So Jung, Nanoparticles having oligonucleotides attached thereto and uses therefor.
  119. Park,So Jung; Taton,Thomas Andrew; Mirkin,Chad A., Nanoparticles having oligonucleotides attached thereto and uses therefor.
  120. Mirkin, Chad A.; Letsinger, Robert L.; Mucic, Robert C.; Storhoff, James J.; Elghanian, Robert; Taton, Thomas A., Nanoparticles having oligonucleotides attached thereto and uses thereof.
  121. Klimov, Victor I.; Mikhailovski, Alexandre; Hollingsworth, Jennifer A.; Leatherdale, Catherine A.; Bawendi, Moungi G., Optical amplifiers and lasers.
  122. Berggren Magnus Rolf,SEX ; Dodabalapur Ananth ; Steigerwald Michael Louis, Optical devices comprising polymer-dispersed crystalline materials.
  123. Burt Michael Graham,GB3, Optical fibre with quantum dots.
  124. Lawandy Nabil R. (Providence RI), Optical gain medium having doped nanocrystals of semiconductors and also optical scatterers.
  125. Shinya Maenosono JP; Ceco Dushkin JP; Yukio Yamaguchi JP; Harumi Asami JP; Soichiro Saita JP, Optical memory device.
  126. Brian A. Pollok ; Brian D. Hamman ; Steven M. Rodems ; Lewis R. Makings, Optical probes and assays.
  127. Lawandy Nabil M. (Providence RI), Optical sources having a strongly scattering gain medium providing laser-like action.
  128. Lawandy Nabil M. (Providence RI), Optical sources having a strongly scattering gain medium providing laser-like action.
  129. West, Jennifer L.; Halas, Nancy J.; Hirsch, Leon R., Optically-active nanoparticles for use in therapeutic and diagnostic methods.
  130. Shi Song Q. (Phoenix AZ) So Franky (Teme AZ) Harvey ; III Thomas B. (Scottsdale AZ), Organic light emitting diodes with molecular alignment and method of fabrication.
  131. Heath James R. ; Leff Daniel V., Organically-functionalized monodisperse nanocrystals of metals.
  132. Weiss Shimon ; Bruchez ; Jr. Marcel ; Alivisatos Paul, Organo Luminescent semiconductor nanocrystal probes for biological applications and process for making and using such p.
  133. Shimon Weiss ; Marcel Bruchez, Jr. ; Paul Alivisatos, Organo luminescent semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  134. Weiss, Shimon; Bruchez, Jr., Marcel; Alivisatos, Paul, Organo luminescent semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  135. Weiss, Shimon; Bruchez, Jr., Marcel; Alivisatos, Paul, Organo luminescent semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  136. Weiss,Shimon; Bruchez, Jr.,Marcel; Alivisatos,Paul, Organo luminescent semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  137. Weiss,Shimon; Bruchez, Jr.,Marcel; Alivisatos,Paul, Organo luminescent semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  138. Wolf Gerald (5 Hawthorne Rd. Winchester MA 01890), Percutaneous lymphography.
  139. Gray Henry F. ; Yang Jianping ; Hsu David S. Y. ; Ratna Banhalli R., Phosphors having a semiconductor host surrounded by a shell.
  140. Hashimoto Shuichi,JPX ; Kasama Kunihiko,JPX, Photo-mask used in aligner for exactly transferring main pattern assisted by semi-transparent auxiliary pattern and pr.
  141. Empedocles, Stephen; Bawendi, Moungi, Polarization label for measuring 3-dimensional orientation.
  142. Alivisatos A. Paul (Berkeley CA) Olshavsky Michael A. (Brunswick OH), Preparation of III-V semiconductor nanocrystals.
  143. Pehnt Martin,DEX ; Schulz Douglas L. ; Curtis Calvin J. ; Ginley David S., Preparation of a semiconductor thin film.
  144. Bawendi, Moungi; Stott, Nathan E., Preparation of nanocrystallites.
  145. Bawendi, Moungi; Stott, Nathan E., Preparation of nanocrystallites.
  146. Bawendi,Moungi; Stott,Nathan E., Preparation of nanocrystallites.
  147. Constant Georges (Ramonville Saint Agne FRX) Haran Raymond (Grenade FRX) Lebugle Albert (Toulouse FRX) Zaouk Aref (Toulouse FRX) Morancho Roland (Toulouse FRX) Pouvreau Philippe (Maillezais FRX), Process for depositing a III-V semi-conductor layer on a substrate.
  148. Alivisatos A. Paul ; Peng Xiaogang ; Manna Liberato,ITX, Process for forming shaped group II-VI semiconductor nanocrystals, and product formed using process.
  149. Alivisatos A. Paul ; Peng Xiaogang ; Manna Liberato,ITX, Process for forming shaped group III-V semiconductor nanocrystals, and product formed using process.
  150. Paul O'Brien GB; Tito Trin Dade PT, Process for preparing a nanocrystalline material.
  151. Reetz Manfred T.,DEX ; Lohmer Gunther,DEX, Process for preparing solvent-stabilized metal colloids and substrate-immobilized metal clusters.
  152. Stephen P. A. Fodor ; Dennis W. Solas ; William J. Dower, Products for detecting nucleic acids.
  153. Hakimi Farhad (Watertown MA) Bawendi Moungi G. (Cambridge MA) Tumminelli Richard (Ashland MA) Haavisto John R. (Marshfield Hills MA), Quantum dot Laser.
  154. Bawendi, Moungi G.; Heine, Jason; Jensen, Klavs F.; Miller, Jeffrey N.; Moon, Ronald L., Quantum dot white and colored light emitting diodes.
  155. Bawendi, Moungi G.; Heine, Jason; Jensen, Klavs F.; Miller, Jeffrey N.; Moon, Ronald L., Quantum dot white and colored light emitting diodes.
  156. Moungi G. Bawendi ; Jason Heine ; Klavs F. Jensen ; Jeffrey N. Miller ; Ronald L. Moon, Quantum dot white and colored light emitting diodes.
  157. Miller, Jeffrey N.; Moon, Ronald L.; Bawendi, Moungi E.; Heine, Jason; Jensen, Klavs F., Quantum dot white and colored light-emitting devices.
  158. Taira Kenichi (Tokyo JPX), Quantum dot-tunnel device which can be selectively excited by a first light emitting source and the information thus sto.
  159. Lawandy, Nabil M., Quantum dots, semiconductor nanocrystals and semiconductor particles used as fluorescent coding elements.
  160. Esenaliev Rinat O., Radiation and nanoparticles for enhancement of drug delivery in solid tumors.
  161. Yabusaki Kenichi K. (Albany CA), Reaginic test for syphilis.
  162. Ricci Russell L., Remote controlled door strike plate.
  163. Takahashi Yasuhito (Hirakata JPX) Tsujimura Ayumu (Takatsuki JPX), Semiconductor laser and a method for fabricating the same.
  164. Okuyama Hiroyuki (Kanagawa JPX) Akimoto Katsuhiro (Kanagawa JPX) Miyajima Takao (Kanagawa JPX) Ozawa Masafumi (Kanagawa JPX) Morinaga Yuko (Kanagawa JPX) Hiei Futoshi (Kanagawa JPX) Nakano Kazushi (T, Semiconductor laser with ZnMgSSe cladding layers.
  165. Lawandy Nabil M., Semiconductor nanocrystal display materials and display apparatus employing same.
  166. Weiss Shimon ; Bruchez Marcel ; Alivisatos Paul, Semiconductor nanocrystal probes for biological applications and process for making and using such probes.
  167. Alivisatos, A. Paul; Larabell, Carolyn A.; Parak, Wolfgang J.; Le Gros, Mark; Boudreau, Rosanne, Semiconductor nanocrystal-based phagokinetic tracking.
  168. Alivisatos A. Paul ; Colvin Vicki L., Semiconductor nanocrystals covalently bound to solid inorganic surfaces using self-assembled monolayers.
  169. Bawendi, Moungi G.; Jensen, Klavs F., Semiconductor nanocrystals for inventory control.
  170. Chapple-Sokol Jonathan D. (Poughkeepsie NY) Subbanna Seshadri (Hopewell Junction NY) Tejwani Manu J. (Yorktown Heights NY), Semiconductor quantum dot light emitting/detecting devices.
  171. Hayashi, Katsumi, Sentinel lymph node detection method and system therefor.
  172. Mulvaney, Paul Charles; Liz-Marzan, Luis Manuel, Stabilized particles and methods of preparation and use thereof.
  173. Bawendi,Moungi G.; Kim,Sungjee; Stott,Nathan E., Stabilized semiconductor nanocrystals.
  174. Peng, Xiaogang; Peng, Zuoyan; Qu, Lianhua, Synthesis of colloidal nanocrystals.
  175. Markowitz Michael ; Chow Gan Moog ; Singh Alok, Synthesis of unagglomerated metal nano-particles at membrane interfaces.
  176. Kossovsky Nir (Los Angeles CA) Hnatyszyn H. James (Los Angeles CA) Gelman Andrew (Los Angeles CA), Targeted transfection nanoparticles.
  177. Bawendi, Moungi G.; Mikulec, Frederic V.; Kim, Sungjee, Tellurium-containing nanocrystalline materials.
  178. Bawendi,Moungi G.; Mikulec,Frederic V.; Kim,Sungjee, Tellurium-containing nanocrystalline materials.
  179. Krupke William F. (Pleasanton CA) Page Ralph H. (San Ramon CA) DeLoach Laura D. (Manteca CA) Payne Stephen A. (Castro Valley CA), Transition-metal doped sulfide, selenide, and telluride laser crystal and lasers.
  180. Zarling David A. (Menlo Park CA) Rossi Michel J. (Lausanne CHX) Peppers Norman A. (Belmont CA) Kane James (Lawrenceville NJ) Faris Gregory W. (Menlo Park CA) Dyer Mark J. (San Jose CA) Ng Steve Y. (S, Up-converting reporters for biological and other assays using laser excitation techniques.
  181. Bawendi Moungi G. ; Mikulec Frederick V. ; Lee Jin-Kyu,KRX, Water-soluble fluorescent nanocrystals.
  182. Moungi G. Bawendi ; Frederick V. Mikulec ; Jin-Kyu Lee KR, Water-soluble fluorescent nanocrystals.
  183. Bawendi Moungi G. ; Mikulec Frederic V. ; Lee Jin-Kyu,KRX, Water-soluble fluorescent semiconductor nanocrystals.
  184. Moungi G. Bawendi ; Frederick V. Mikulec ; Jin-Kyu Lee KR, Water-soluble thiol-capped nanocrystals.

활용도 분석정보

상세보기
다운로드
내보내기

활용도 Top5 특허

해당 특허가 속한 카테고리에서 활용도가 높은 상위 5개 콘텐츠를 보여줍니다.
더보기 버튼을 클릭하시면 더 많은 관련자료를 살펴볼 수 있습니다.

섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로