$\require{mediawiki-texvc}$

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.

Curing binder material for carbon nanotube electron emission cathodes 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H01J-001/62
출원번호 US-0612313 (2006-12-18)
등록번호 US-8264137 (2012-09-11)
발명자 / 주소
  • Li, Yunjun
출원인 / 주소
  • Samsung Electronics Co., Ltd.
대리인 / 주소
    Sughrue Mion, PLLC
인용정보 피인용 횟수 : 0  인용 특허 : 192

초록

A binder material, inorganic polymer, is used to formulate carbon nanotube pastes. This material can be cured at 200° C. and has a thermal-stability up to 500° C. Low-out gassing of this binder material makes it a good candidate for long life field emission devices. Due to better adhesion with this

대표청구항

1. A composite for a field emission cathode, comprising an inorganic polymer mixed with carbon nanotubes wherein the inorganic polymer is a silicon-containing, ladder-like polymer. 2. The composite of claim 1, wherein the inorganic polymer is polyphenylsilsesquioxane (PPSQ). 3. The composite of clai

이 특허에 인용된 특허 (192)

  1. Baughman, Ray H.; Cui, Changxing; Su, Ji; Iqbal, Zafar; Zakhidov, Anvar, Actuators using double-layer charging of high surface area materials.
  2. Jaffe,Stephen Mosheim; Contescu,Cristian Ion, Adsorbent sheet material for parallel passage contactors.
  3. Mc Knight,Geoffrey P.; Massey,Cameron; Herrera,Guillermo A.; Barvosa Carter,William; Johnson,Nancy L.; Browne,Alan L., Airflow control devices based on active materials.
  4. McKnight,Geoffrey P.; Massey,Cameron; Herrera,Guillermo A.; Barvosa Carter,William; Johnson,Nancy L.; Browne,Alan L., Airflow control devices based on active materials.
  5. Jimenez,Oscar, Angioplasty super balloon fabrication with composite materials.
  6. Aramaki,Masaaki; Sonobe,Kenya, Apatite-reinforced resin composition.
  7. Demers,Linette, Apparatus, materials, and methods for fabrication and catalysis.
  8. Melker,Richard J.; Hayes,Ronald L.; Wang,Ka Wang Kevin; Dennis,Donn Michael, Application of nanotechnology and sensor technologies for ex-vivo diagnostics.
  9. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Kenneth A.; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Array of single-wall carbon nanotubes.
  10. Tsionsky, Michael; Glezer, Eli N.; Altunata, Selen; Sigal, George; Leland, Jonathan K.; Billadeau, Mark A.; Leytner, Svetlana; Martin, Mark; Helms, Larry, Assay buffer, compositions containing the same, and methods of using the same.
  11. Junji Ito JP, Binders for porous electrodes and porous electrodes using the same binders.
  12. Giuseppe Mario Diprizio ; Timothy James Collins ; Patrick L. Rakers ; Victor Vega, Capacitively powered radio frequency identification device.
  13. Smalley, Richard E.; Colbert, Daniel T.; Dai, Hongjie; Liu, Jie; Rinzler, Andrew G.; Hafner, Jason H.; Smith, Ken; Guo, Ting; Nikolaev, Pavel; Thess, Andreas, Carbon fibers formed from single-wall carbon nanotubes.
  14. Jang, Jyongsik; Oh, Joon Hak; Kim, Dong Cheol, Carbon nano-particle and method of preparing the same and transparent conductive polymer composite containing the same.
  15. Ruoff Rodney S. (Menlo Park CA) Lorents Donald C. (Palo Alto CA) Malhotra Ripudaman (San Carlos CA) Dyer Mark J. (San Jose CA), Carbon nanoencapsulates.
  16. Glatkowski,Paul J.; Landis,David H.; Piche,Joseph W.; Conroy,Jeffrey L., Carbon nanotube fiber-reinforced composite structures for EM and lightning strike protection.
  17. Resasco,Daniel E.; Kitiyanan,Boonyarach; Harwell,Jeffrey H.; Alvarez,Walter, Carbon nanotube product comprising single-walled carbon nanotubes.
  18. Horiuchi, Kazunaga; Yoshizawa, Hisae; Shimizu, Masaaki, Carbon nanotube structures and method for manufacturing the same.
  19. Horiuchi, Kazunaga; Shimizu, Masaaki; Yoshizawa, Hisae, Carbon nanotube structures, carbon nanotube devices using the same and method for manufacturing carbon nanotube structures.
  20. Iijima,Sumio; Yudasaka,Masako; Koshio,Akira, Carbon nanotube-carbon nanohorn complex and method for producing the same.
  21. Hongjie Dai ; Calvin F. Quate ; Robert J. Chen, Carbon nanotubes and methods of fabrication thereof using a liquid phase catalyst precursor.
  22. Mack, Julia J; Viculis, Lisa M.; Kaner, Richard B, Chemical manufacture of nanostructured materials.
  23. Wilkinson,David; Hamilton,Colleen E.; Hirschorn,Bryan David; Mangaudis,Michael John, Chemical mechanical polishing retaining ring with integral polymer backing.
  24. Wang,Hsing Lin; Li,Wenguang, Chemical synthesis of chiral conducting polymers.
  25. Browne,Alan L.; Johnson,Nancy L., Closure lockdown assemblies and methods utilizing active materials.
  26. Glatkowski,Paul J., Coatings comprising carbon nanotubes and methods for forming same.
  27. Hirata, Masukazu; Goto, Takuya; Takenaka, Kouji; Iwasaki, Ryu; Horiuchi, Shigeo, Composite containing thin-film particles having carbon skeleton, method of reducing the thin-film particles, and process for the production of the composite.
  28. Meagley,Robert P.; Goodner,Michael D., Composite sacrificial material.
  29. Majumdar, Debasis; Castle, Richard A.; Chen, Janglin, Composition for antistat layer.
  30. Majumdar,Debasis; Castle,Richard A.; Chen,Janglin, Composition for antistat layer.
  31. Kumar, Satish; Arnold, Fred E.; Dang, Thuy D., Compositions comprising rigid-rod polymers and carbon nanotubes and process for making the same.
  32. Senecal,Kris; Samuelson,Lynne; Sennett,Michael; Schreuder Gibson,Heidi, Conductive (electrical, ionic, and photoelectric) polymer membrane articles, and method for producing same.
  33. Amarasekera, Jayantha; Balfour, Kim; Lietzau, Christian, Conductive plastic compositions and method of manufacture thereof.
  34. Hu, Yongqi; Wang, Yan; Duboust, Alain; Liu, Feng Q.; Mavliev, Rashid; Chen, Liang-Yuh; Morad, Ratson; Somekh, Sasson, Conductive polishing article for electrochemical mechanical polishing.
  35. Hu,Yongqi; Wang,Yan; Duboust,Alain; Liu,Feng Q.; Manens,Antoine P.; Neo,Siew S.; Tsai,Stan D.; Chen,Liang Yuh; Butterfield,Paul D.; Tian,Yuan A.; Ko,Sen Hou, Conductive polishing article for electrochemical mechanical polishing.
  36. Hannay, Richard C.; Kirby, Norman; Owen, Richard A.; Tian, Fu, Conductor polymer backfill composition and method of use as a reinforcement material for utility poles.
  37. Glatkowski,Paul J.; Landrau,Nelson; Landis, Jr.,David H.; Piche,Joseph W.; Conroy,Jeffrey L., Conformal coatings comprising carbon nanotubes.
  38. Colbert,Daniel T.; Dai,Hongjie; Hafner,Jason H.; Rinzler,Andrew G.; Smalley,Richard E., Continuous fiber of single-wall carbon nanotubes.
  39. Smalley, Richard E.; Colbert, Daniel T.; Dai, Hongjie; Liu, Jie; Rinzler, Andrew G.; Hafner, Jason H.; Smith, Kenneth A.; Guo, Ting; Nikolaev, Pavel; Thess, Andreas, Continuous fiber of single-wall carbon nanotubes.
  40. Parker,Dane Kenton, Controlled free radical agent for nanocomposite synthesis.
  41. Okoroanyanwu, Uzodinma; Lopatin, Sergey D.; Buynoski, Matthew S., CuS formation by anodic sulfide passivation of copper surface.
  42. Zarnoch, Kenneth Paul; Guo, Hua; Chao, Herbert Shin-I, Curable resin composition, method for the preparation thereof, and articles derived thereform.
  43. Dennis, Donn M.; Martin, Charles R.; Morey, Timothy E.; Partch, Richard E.; Shah, Dinesh O; Varshney, Manoj, Detoxification and decontamination using nanotechnology therapy.
  44. Holger Klos DE; Walter Schutz DE, Device for storing compressed gas.
  45. Bonnell,Dawn A.; Alvarez,Rodolfo Antonio; Kalinin,Sergei V., Directed assembly of nanometer-scale molecular devices.
  46. Chen, Jian; Von Ehr, James R., Directional assembly of carbon nanotube strings.
  47. Ray,Thomas Wayne; Boyce,James Edward, Drill bit having an improved seal and lubrication method using same.
  48. Charati,Sanjay Gurbasappa; Dhara,Dibakar; Elkovitch,Mark; Ghosh,Soumyadeb; Mutha,Nitin; Rajagopalan,Srinivasan; Shaikh,Abbas Alli, Electrically conductive compositions and method of manufacture thereof.
  49. Todt, Michael Leslie; Rodrigues, David Ernest; Ting, Sai-Pei, Electrically conductive polymer composite compositions, method for making, and method for electrical conductivity enhancement.
  50. Shibuta Daisuke,JPX, Electrically conductive polymer composition.
  51. Miyoshi, Takaaki; Hashimoto, Kazuhiko, Electrically conductive resin composition and production process thereof.
  52. Mahon,Peter John; Sacchetta,Clodoveo Simone; Drummond,Calum John; Aitchison,Phillip Brett, Electrode for an energy storage device.
  53. Segal, Brent M.; Brock, Darren K.; Rueckes, Thomas, Electromechanical memory array using nanotube ribbons and method for making same.
  54. Segal,Brent M.; Brock,Darren K.; Rueckes,Thomas, Electromechanical memory array using nanotube ribbons and method for making same.
  55. Segal, Brent M.; Brock, Darren K.; Rueckes, Thomas, Electromechanical memory having cell selection circuitry constructed with nanotube technology.
  56. Rueckes, Thomas; Segal, Brent M.; Brock, Darren K., Electromechanical three-trace junction devices.
  57. Kalkan, Ali Kaan; Fonash, Stephen J., Electronic and opto-electronic devices fabricated from nanostructured high surface to volume ratio thin films.
  58. Lin,Yuehe; Liang,Liang; Liu,Jun, Electrosynthesis of nanofibers and nano-composite films.
  59. Castle, Richard A.; Chen, Janglin; Majumdar, Debasis, Element with antistat layer.
  60. Jacobson, Joseph M.; Bulthaup, Colin A.; Wilhelm, Eric J.; Hubert, Brian N., Fabrication of finely featured devices by liquid embossing.
  61. Parsonage, Edward; Miller, Paul J., Fiber pattern printing.
  62. Harvey,Albert R.; Ellertson,John W., Fiber-reinforced rocket motor insulation.
  63. Harmer Mark A. (Wilmington DE) Phillips Brian R. (Wilmington DE), Fibers reinforced with inorganic whiskers.
  64. Chun-Ming Niu, Fibril composite electrode for electrochemical capacitors.
  65. Margrave,John L.; Khabashesku,Valery N.; Gu,Zhenning; Davydov,Valery Aleksandrovich; Rakhmanina,Aleksandra Viktorovna; Kashevarova,Lyudmile Stepanovna, Fluorination of polymeric C.
  66. Yamada, Atsuo; Ata, Masafumi, Fuel cell and fuel cell system.
  67. Botros,Maged G., Functionalized propylene polymer compositions and composites containing same.
  68. Klos Holger,DEX ; Schmitz Ulrich,DEX ; Schutz Walter,DEX, Gas accumulator.
  69. Klett, James W.; Janney, Mark A., Gelcasting polymeric precursors for producing net-shaped graphites.
  70. Rajagopalan, Murali; Lutz, Mitchell E.; Voorheis, Peter R., Golf ball compositions comprising nanoparticulates.
  71. Massey Richard J. ; Martin Mark T. ; Dong Liwen ; Lu Ming ; Fischer Alan ; Jameison Fabian ; Liang Pam ; Hoch Robert ; Leland Jonathan K., Graphitic nanotubes in luminescence assays.
  72. Charych Deborah H. ; Berman Amir,ILX, Growth of oriented crystals at polymerized membranes.
  73. Fanucci, Jerome P.; Gorman, James J.; McAleenan, Michael, Hatch or door system for securing and sealing openings in marine vessels.
  74. Lee, Heon-Sang; Lee, Ju-Hyung; Park, Kyung-Mo; Hwang, Duck-Kun; Kum, Chong-Koo; Kim, Eung-Soo, Heat absorb-release plastic resin composition and molded product thereof.
  75. Blanchet Fincher,Graciela Beatriz, High conductivity polyaniline compositions and uses therefor.
  76. Lundquist, Eric G.; Devonport, Wayne, High solids process for preparing polymeric nanoparticles.
  77. Brei,Diann; Redmond,John; Wilmot,Nathan A.; Browne,Alan L.; Johnson,Nancy L.; Jones,Gary L., Hood lift mechanisms utilizing active materials and methods of use.
  78. Segal, Brent M.; Brock, Darren K.; Rueckes, Thomas, Hybrid circuit having nanotube electromechanical memory.
  79. Taylor-Smith Ralph E. ; Valdes Jorge Luis, Hybrid inorganic-organic composite for use as an interlayer dielectric.
  80. Rao, Yuanqiao; Majumdar, DeBasis; Kress, Robert J.; Decker, David E., Imaging member with polyester base.
  81. Gallucci, Robert R., Impact modified compositions of polyimide and polyamide resins.
  82. Okada, Nobuko; Takano, Yutaka; Kiguchi, Hiroshi, Ink jet recording apparatus and manufacturing method for functional liquid applied substrate.
  83. Mazany,Anthony M.; Robinson,John W.; Cartwright,Craig L., Inorganic matrix compositions, composites incorporating the matrix, and process of making the same.
  84. Woodruff, L. Andy; Bordunov, Andrei V.; Pohl, Christopher A., Ion exchange cryptands covalently bound to substrates.
  85. Ding, Rui-dong; Newell, Clint, Ionomeric nanocomposites and articles therefrom.
  86. Ikeda, Katsuji; Hozumi, Yoshihiro; Kashihara, Masami, Laminated electric double layer capacitor module.
  87. Duan,Xiangfeng; Niu,Chunming; Empedocles,Stephen; Romano,Linda T.; Chen,Jian; Sahi,Vijendra; Bock,Lawrence A.; Stumbo,David P.; Parce,J. Wallace; Goldman,Jay L., Large-area nanoenabled macroelectronic substrates and uses therefor.
  88. Nakayama, Yoshikazu; Harada, Akio, Light receiving and emitting probe and light receiving and emitting probe apparatus.
  89. Patrick, David L., Liquid crystal imprinting.
  90. Patrick, David L., Liquid crystal imprinting.
  91. Kasai, Seishi; Yamasaki, Sumiaki, Lithographic printing plate precursor.
  92. Veedu, Sreekumar T.; Kumar, Satish, Macroscopic fiber comprising single-wall carbon nanotubes and acrylonitrile-based polymer and process for making the same.
  93. Colbert,Daniel T.; Dai,Hongjie; Hafner,Jason H.; Rinzler,Andrew G.; Smalley,Richard E.; Liu,Jie; Smith,Kenneth A.; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Macroscopically manipulable nanoscale devices made from nanotube assemblies.
  94. Wang,Xingwu; Greenwald,Howard J., Magnetically shielded assembly.
  95. Wang,Xingwu; Greenwald,Howard J.; Miller,Ronald E.; Helfer,Jeffrey L.; Gray,Robert, Magnetically shielded assembly.
  96. Mayes, Eric Leigh; Tyler, Malvin Nicolas, Magnetizable device.
  97. Giebeler, Carsten; Lenssen, Kars-Michiel Hubert; Zilker, Stephan Johann; Coehoorn, Reinder, Magnetoresistive device and electronic device.
  98. Greiner, Andreas; Wendorff, Joachim; Averdung, Johannes; Droscher, Michael, Meso-and nanotubes.
  99. Narang,Subhash; Ventura,Susanna; Sharma,Sunity, Metal/active oxygen batteries.
  100. Baglin, John E. E.; Hamann, Hendrik F.; Sun, Shouheng, Method and apparatus for linking and/or patterning self-assembled objects.
  101. Crooks,Richard M.; Sun,Li, Method and apparatus for nanoparticle transport and detection.
  102. Fenniri, Hicham, Method and associated pyrimido[4,5-d]pyrimidine-2,5-diones and pyrido[4,3-d]pyrimidin-2-ones for forming nanotubes.
  103. Avanzino,Steven C.; Tran,Minh, Method and structure of memory element plug with conductive Ta removed from sidewall at region of memory element film.
  104. Han,Chang Soo; Lee,Eung Sug; Lee,Hyung Woo, Method for attaching rod-shaped nano structure to probe holder.
  105. Margrave,John L.; Gu,Zhenning; Hauge,Robert H.; Smalley,Richard E., Method for cutting single-wall carbon nanotubes through fluorination.
  106. Potyrailo, Radislav Alexandrovich; Olson, Daniel Robert; Brennan, Michael Jarlath; Cawse, James Norman; Chisholm, Bret Ja, Method for determination of structural defects of coatings.
  107. Newman Gerard K. ; Shambaugh Robert L. ; Harwell Jeffrey H., Method for forming a fibers/composite material having an anisotropic structure.
  108. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Ken; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Method for forming a patterned array of single-wall carbon nanotubes.
  109. Khabashesku,Valery N.; Peng,Haiqing; Margrave, legal representative,Mary Lou; Billups,Wilbur Edward; Ying,Yunming; Margrave, deceased,John L., Method for functionalizing carbon nanotubes utilizing peroxides.
  110. Smalley, Richard E.; Colbert, Daniel T.; Dai, Hongjie; Liu, Jie; Rinzler, Andrew G.; Hafner, Jason H.; Smith, Kenneth A.; Guo, Ting; Nikolaev, Pavel; Thess, Andreas, Method for growing single-wall carbon nanotubes utlizing seed molecules.
  111. Averdung,Johannes; Greiner,Andreas; Wendorff,Joachim H.; Hou,Haoquing; Bognitzki,Michael; Zeng,Jun, Method for making shaped structures with internally coated cavities.
  112. Goldstein Mark K., Method for making strong mantles and other ceramic structures.
  113. Arthur,David J.; Glatkowski,Paul J., Method for patterning carbon nanotube coating and carbon nanotube wiring.
  114. Smalley,Richard E.; Colbert,Daniel T.; Dai,Hongjie; Liu,Jie; Rinzler,Andrew G.; Hafner,Jason H.; Smith,Kenneth A.; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Method for producing self-assembled objects comprising single-wall carbon nanotubes and compositions thereof.
  115. Colbert,Daniel T.; Dai,Hongjie; Hafner,Jason H.; Rinzler,Andrew G.; Smalley,Richard E.; Liu,Jie; Smith,Kenneth A.; Guo,Ting; Nikolaev,Pavel; Thess,Andreas, Method for purification of as-produced single-wall carbon nanotubes.
  116. Smalley,Richard E.; Hauge,Robert H.; Kittrell,W. Carter; Sivarajan,Ramesh; Strano,Michael S.; Bachilo,Sergei M.; Weisman,R. Bruce, Method for separating single-wall carbon nanotubes and compositions thereof.
  117. Mazurkiewicz Marian, Method of creating ultra-fine particles of materials using a high-pressure mill.
  118. Mazurkiewicz, Marian; Conrad, Bruce E., Method of creating ultra-fine particles of materials using a high-pressure mill.
  119. Fisher Alan ; Hoch Robert ; Moy David ; Niu Chunming ; Ogata Naoya,JPX ; Tennent Howard ; McCarthy Thomas, Method of making functionalized nanotubes.
  120. Watanabe,Miho; Watanabe,Hiroyuki; Manabe,Chikara; Shimizu,Masaaki, Method of manufacturing electronic device.
  121. Bronikowski,Michael J.; Hunt,Brian D., Method of producing regular arrays of nano-scale objects using nano-structured block-copolymeric materials.
  122. Resasco,Daniel E.; Kitiyanan,Boonyarach; Harwell,Jeffrey H.; Alvarez,Walter, Method of producing single-walled carbon nanotubes.
  123. Harutyunyan,Avetik; Pradhan,Bhabendra K.; Eklund,Peter C., Method of purifying nanotubes and nanofibers using electromagnetic radiation.
  124. Nagahara, Larry A.; Amlani, Islamasha; Lewenstein, Justin Charles, Method of selectively aligning and positioning nanometer-scale components using AC fields.
  125. Cruchon Dupeyrat,Sylvain; Nelson,Michael; Elghanian,Robert; Fragala,Joseph S.; Touzov,Igor; Banerjee,Debjyoti, Methods and apparatus for ink delivery to nanolithographic probe systems.
  126. Cubicciotti Roger S., Methods for detecting and identifying single molecules.
  127. Bao, Lirong; Tan, Li; Huang, Xudong; Kong, Yen Peng; Guo, Lingjie Jay; Pang, Stella W.; Yee, Albert, Methods of creating patterns on substrates and articles of manufacture resulting therefrom.
  128. Wang, Aiguo; Essner, Aaron, Methods of improving the wear resistance of prosthetic medical devices.
  129. Wang, Aiguo; Essner, Aaron, Methods of improving the wear resistance of prosthetic medical devices.
  130. Rueckes, Thomas; Segal, Brent M.; Brock, Darren K., Methods of making electromechanical three-trace junction devices.
  131. Rueckes, Thomas; Segal, Brent M., Methods of nanotube films and articles.
  132. Lee,Kang P.; Gould,George L.; Gronemeyer,William; Stepanian,Christopher John, Methods to produce gel sheets.
  133. Kuhr,Werner G.; Bocian,David F.; Liu,Zhiming; Yasseri,Amir, Molehole embedded 3-D crossbar architecture used in electrochemical molecular memory device.
  134. Wohlstadter Jacob ; Wilbur James ; Sigal George ; Martin Mark ; Guo Liang-Hong ; Fischer Alan ; Leland Jon, Multi-array, multi-specific electrochemiluminescence testing.
  135. Wohlstadter,Jacob N.; Wilbur,James; Sigal,George; Martin,Mark; Guo,Liang Hong; Fischer,Alan; Leland,Jon; Billadeau,Mark A.; Helms,Larry R.; Darvari,Ramin, Multi-array, multi-specific electrochemiluminescence testing.
  136. Funaki, Atsushi; Sumi, Naoko; Nishi, Eiichi; Isobe, Noriyuki; Nishioka, Tomoharu; Nakamura, Koji, Multi-layer hose.
  137. Tran,Bao, NANO IC packaging.
  138. Glatkowski, Paul J.; Arthur, David J., Nanocomposite dielectrics.
  139. Fischer Alan B., Nanofiber packed beds having enhanced fluid flow characteristics.
  140. Wan,Julin; Alizadeh,Azar; Martins Loureiro,Sergio Paulo; Manoharan,Mohan; Lucien Malenfant,Patrick Roland; Crane Olson,Eric James; Taylor,Seth Thomas, Nanoscale ordered composites of covalent ceramics for high-temperature structural applications via block-copolymer-assisted assembly and method of making.
  141. Lieber, Charles M.; Rueckes, Thomas; Joselevich, Ernesto; Kim, Kevin, Nanoscopic wire-based devices and arrays.
  142. Lieber,Charles M.; Park,Hongkun; Wei,Qingqiao; Cui,Yi; Liang,Wenjie, Nanosensors.
  143. Scher, Erik; Buretea, Mihai A.; Chow, Calvin; Empedocles, Stephen; Meisel, Andreas; Parce, J. Wallace, Nanostructure and nanocomposite based compositions and photovoltaic devices.
  144. Routkevitch, Dmitri; Mardilovich, Peter; Govyadinov, Alex; Hooker, Stephanie; Williams, Stephen S., Nanostructured ceramic platform for micromachined devices and device arrays.
  145. Czerw, Richard; Carroll, David; Hoshi, Sakutaro, Nanostructured-doped compound for use in an EL element.
  146. Moll,Nicolas J.; Roitman,Daniel B.; Lu,Jennifer Q., Nanostructures and methods of making the same.
  147. Rueckes, Thomas; Segal, Brent M., Nanotube films and articles.
  148. Shambaugh,Robert L., Nanotube/matrix composites and methods of production and use.
  149. Lee,Howard Wing Hoon; Chin,Alan Hap; Pfenninger,William Matthew, Optical devices with engineered nonlinear nanocomposite materials.
  150. DiMeo, Jr., Frank; King, Mackenzie E., Optical hydrogen detector.
  151. Kano,Masataka, Organic bistable element, organic bistable memory device using the same, and method for driving said organic bistable element and organic bistable memory device.
  152. Hirai,Katsura; Fukuda,Mitsuhiro, Organic semiconductor composition.
  153. Minakata,Takashi, Organic semiconductor element.
  154. Hirai, Katsura; Funayama, Satoshi; Eguchi, Toshiya; Yamamoto, Naoto, Organic thin-film semiconductor element and manufacturing method for the same.
  155. Hirai, Katsura, Organic thin-film transistor and manufacturing method for the same.
  156. Hirai,Katsura; Kitamura,Shigehiro, Organic thin-film transistor, organic thin-film transistor sheet and manufacturing method thereof.
  157. Cruz Uribe,Antonio S.; Samii,Mohammad M; Hock,Scott W; Field,Marshall, Photonically activated fluid ejector apparatus and methods.
  158. Ushirogouchi Toru (Yokohama JPX) Shida Naomi (Kawasaki JPX) Naito Takuya (Tokyo JPX) Asakawa Koji (Kawasaki JPX) Hongu Akinori (Tokyo JPX) Nakase Makoto (Tokyo JPX) Niki Hirokazu (Yokohama JPX), Photosensitive composition.
  159. Ushirogouchi, Toru; Shida, Naomi; Naito, Takuya; Asakawa, Koji; Hongu, Akinori; Nakase, Makoto; Niki, Hirokazu, Photosensitive composition.
  160. Lyons, Christopher F.; Subramanian, Ramkumar; Chang, Mark S., Photosensitive polymeric memory elements.
  161. Gaudiana, Russell; Li, Lian, Photovoltaic cell interconnection.
  162. Sager, Brian M.; Roscheisen, Martin R.; Petritsch, Klus; Pichler, Karl; Fidanza, Jacqueline; Yu, Dong, Photovoltaic devices fabricated by growth from porous template.
  163. Chittibabu, Kethinni; Eckert, Robert; Gaudiana, Russell; Li, Lian; Montello, Alan; Montello, Edmund; Wormser, Paul, Photovoltaic fibers.
  164. Yeager, Gary W.; Colborn, Robert E., Poly (phenylene ether)--polyvinyl thermosetting resin.
  165. Ogawa,Shun; Yoshinaka,Satoshi; Hayashi,Takeo, Polyamide and resin composition.
  166. Aramaki, Masaaki; Watanabe, Katsushi; Nakashima, Ikutoshi, Polyamide resin composition.
  167. Hergenrother, Paul M.; Smith, Jr., Joseph G.; Connell, John W.; Watson, Kent A., Polyimides from 2,3,3′,4′-biphenyltetracarboxylic dianhydride and aromatic diamines.
  168. Farid Fouad Khouri, Polymer-organoclay composite compositions, method for making and articles therefrom.
  169. Zhang, Zhiqiang; Lockwood, Frances E., Preparation of stable nanotube dispersions in liquids.
  170. Rao, Yuanqiao; Majumdar, DeBasis; Kress, Robert J.; Decker, David E., Primer composition for polyesters.
  171. Townsend, III, Paul H.; Foster, Kenneth L., Process for making air gap containing semiconducting devices and resulting semiconducting device.
  172. Matyjaszewski,Krzysztof; Kowalewski,Tomasz; Lambeth,David N.; Spanswick,James; Tsarevsky,Nicolay V., Process for the preparation of nanostructured materials.
  173. Honda, Chika; Ohara, Hiromu; Kita, Hiroshi; Genda, Kazuo, Radiation image detector.
  174. Shchegolikhin, Alexander Nikitovich; Lazareva, Olga Leonidovna; Mel'nikov, Valery Pavlovich; Ozeretski, Vassili Yu; Small, Lyle David, Raman-active taggants and their recognition.
  175. Baker R. Terry K. (State College PA) Rodriguez Nelly M. (State College PA), Removal of contaminants from aqueous and gaseous streams using graphic filaments.
  176. Nakagawa, Tohru; Yukimasa, Tetsuo, Scanning probe microscopy, method of producing the probe, and molecular processing method using the scanning probe microscope.
  177. Wong,Stanislaus S.; Banerjee,Sarbajit, Sidewall-functionalized carbon nanotubes, and methods for making the same.
  178. Sakamoto,Shigeru; Sanda,Hiroko; Nagano,Hirosaku; Kuromatsu,Hidekazu; Namura,Kiyoyuki, Solid polymer electrolyte membrane, solid polymer electrolyte fuel cell using the membrane and method of fabricating the same.
  179. Lobovsky, Alex; Matrunich, Jim; Kozlov, Mikhail; Morris, Robert C.; Baughman, Ray H.; Zakhidov, Anvar A., Spinning, processing, and applications of carbon nanotube filaments, ribbons, and yarns.
  180. Liu,Tao; Kumar,Satish, Supercapacitor having electrode material comprising single-wall carbon nanotubes and process for making the same.
  181. Roberts,M. Joseph; Johnson,Scott K.; Hollins,Richard A.; Johnson,Curtis E.; Groshens,Thomas J.; Irvin,David J., Surface imprinted films with carbon nanotubes.
  182. Sumi,Naoko; Aida,Shigeru; Funaki,Atsushi; Yodogawa,Masahide; Iwasa,Tsuyoshi, Tetrafluoroethylene/ethylene copolymer composition.
  183. Richard Knight ; Elihu D. Grossmann ; Ravikishan R. Guddeti, Thermal plasma process for recovering monomers and high value carbons from polymeric materials.
  184. Martin B. Wolk ; Paul F. Baude ; Jeffrey M. Florczak ; Fred B. McCormick ; Yong Hsu, Thermal transfer element and process for forming organic electroluminescent devices.
  185. Wolk Martin B. ; Baude Paul F. ; McCormick Fred B. ; Hsu Yong, Thermal transfer element and process for forming organic electroluminescent devices.
  186. Wolk Martin B. ; Baude Paul F. ; McCormick Fred B. ; Hsu Yong, Thermal transfer element and process for forming organic electroluminescent devices.
  187. Wolk, Martin B.; Baude, Paul F.; Florczak, Jeffrey M.; McCormick, Fred B.; Hsu, Yong, Thermal transfer element and process for forming organic electroluminescent devices.
  188. Shankarling,Ganapati Subray; Sivakumar,Krishnamoorthy; Dhalla,Adil Minoo, Thermally stable anthrapyridone compositions.
  189. Nakagawa, Matsuyoshi; Miyoshi, Takaaki; Noda, Kazuya, Thermoplastic resin composition and moldings of the same.
  190. Keller, Teddy M., Transistion metal containing ceramic with metal nanoparticles.
  191. Aylward,Peter T.; Majumdar,Debasis; Daly,Robert C.; Robinson,Kelly S.; Fitzgerald,Barry A.; Christian,Paul A., Transparent invisible conductive grid.
  192. Zhao, Yiping; Chen, Yuchuan; Zhang, Xi-Cheng; Raravikar, Nachiket R.; Ajayan, Pulickel M.; Lu, Toh-Ming; Wang, Gwo-Ching; Schadler Feist, Linda S., Ultrafast all-optical switch using carbon nanotube polymer composites.
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