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Storage of hydrogen in layered nanostructures 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C01B-003/02
  • C01B-006/00
  • C01B-031/30
  • D01F-009/12
출원번호 US-0437136 (1995-05-05)
발명자 / 주소
  • Rodriguez Nelly M. (State College PA) Baker R. Terry K. (State College PA)
출원인 / 주소
  • Catalytic Materials Limited (Mansfield MA 02)
인용정보 피인용 횟수 : 85  인용 특허 : 0

초록

The present invention relates to the storage of hydrogen in layered nanostructures possessing: at least some crystallinity, interstices from about 0.335 nm to 0.67 nm, and chemisorption properties with respect to hydrogen at those surfaces of the nanostructure which define the interstices. Preferred

대표청구항

A composition comprised of: (a) a solid layered nanostructure comprised of: (i) crystalline regions; (ii) interstices within said crystalline regions which interstices are from about 0.335 nm to 0.67 nm, and (iii) surfaces of said nanostructure which define said interstices, which surfaces have chem

이 특허를 인용한 특허 (85)

  1. Carruthers, J. Donald; Arno, Jose I., Apparatus and method for hydrogen generation from gaseous hydride.
  2. Colibaba Evulet,Andrei, Appliance having a container including a nanostructured material for hydrogen storage.
  3. Colibaba-Evulet, Andrei, Appliance having a container including a nanostructured material for hydrogen storage.
  4. Jhi,Seung Hoon; Kwon,Young Kyun; Bradley,Keith; Gabriel,Jean Christophe P., Boron-oxide and related compounds for hydrogen storage.
  5. Yanagisawa,Takashi; Endo,Morinobu, Carbon fiber for a fuel cell having catalytic metal supported thereon.
  6. Lynum, Steinar; Hugdahl, Jan; Hox, Ketil; Hildrum, Ragne, Carbon media for storage of hydrogen.
  7. Xu, Xuejun; Baker, R. Terry K., Carbon nanochips as catalyst supports for metals and metal oxides.
  8. Liu,Liang; Fan,Shou Shan, Carbon nanotube array and method for making same.
  9. Dai, Hongjie; Kong, Jing, Carbon nanotube devices.
  10. Dai,Hongjie; Kong,Jing, Carbon nanotube devices.
  11. Dai,Hongjie; Kong,Jing, Carbon nanotube devices.
  12. Dai,Hongjie; Franklin,Nathan R., Carbon nanotube growth.
  13. Cho,Kyeongjae; Peng,Shu, Carbon nanotube sensors.
  14. Sonobe Naohiro,JPX ; Nagai Aisaku,JPX ; Aita Tomoyuki,JPX ; Noguchi Minoru,JPX ; Iwaida Manabu,JPX ; Komazawa Eisuke,JPX, Carbonaceous material for electric double layer capacitor and process for production thereof.
  15. Baker, R. Terry K.; Rodriguez, Nelly M., Catalysts for producing narrow carbon nanostructures.
  16. Kim, Hee Yeon; Jeong, Nam Jo; Han, Seong Ok, Catalysts having metal nano-particle catalyst supported on surface-treated natural cellulose fibers and preparation method thereof.
  17. Kim, Hee-Yeon; Jeong, Nam-Jo; Han, Seong-Ok, Catalysts having metal nano-particle catalyst supported on surface-treated natural cellulose fibers and preparation method thereof.
  18. Muhler, Martin; Xia, Wei, Catalytic etching of carbon fibers.
  19. Muhler, Martin; Xia, Wei, Catalytic etching of carbon fibers.
  20. Harutyunyan, Avetik R., Class of tunable gas storage and sensor materials.
  21. Harutyunyan, Avetik R., Class of tunable gas storage and sensor materials.
  22. Anthony J. Swiontek ; Mark B. Littlejohn ; Wayne W. Lamson, Compartmented disposable food service articles with angular junctions thermoformed with plug-assist.
  23. Doug Wilson ; Gary Pruett ; Shrikant Awasthi, Composition based on a blend of inorganic fibers and inorganic fiber whiskers.
  24. Baker, R. Terry K.; Rodriguez, Nelly M., Conductive polymeric structures containing graphite nanofibers having graphite parallel to the growth axis.
  25. Wei, Fei; Wang, Yao; Luo, Guohua; Yu, Hao; Li, Zhifei; Qian, Weizhong; Wang, Zhanwen; Jin, Yong, Continuous mass production of carbon nanotubes in a nano-agglomerate fluidized-bed and the reactor.
  26. Holger Klos DE; Walter Schutz DE, Device for storing compressed gas.
  27. Yanagisawa,Takashi; Endo,Morinobu, Expanded carbon fiber product and composite using the same.
  28. Kelley Ronald J. ; Pratt Steven D. ; Arledge John K. ; Muthuswamy Sivakumar ; Davis James L., Fuel cell with integral fuel storage.
  29. Sellergren, Per-Ivar, Fuel-storing device.
  30. Yu, Han-Young; Kim, Ansoon; Yang, Jong-Heon; Baek, In-Bok; Ahn, Chang-Geun; Ah, Chil-Seong; Park, Chan-Woo; Lee, Seongjae; Zyung, Taehyoung, Gas storage medium, gas storage apparatus and method thereof.
  31. Polverejan, Mihai; Marotta, Christopher; Baker, R. Terry K., Graphite nanocatalysts.
  32. Baker, R. Terry K.; Rodriguez, Nelly M., Graphite nanofibers having graphite sheets parallel to the growth axis.
  33. Gogotsi, Yury; Libera, Joseph A.; Yoshimura, Masahiro, Graphitic polyhederal crystals in the form of nanotubes, whiskers and nanorods, methods for their production and uses thereof.
  34. Wilson Doug ; Pruett Gary ; Awasthi Shrikant, High performance filters based on inorganic fibers and inorganic fiber whiskers.
  35. Wilson Doug ; Pruett Gary ; Awasthi Shrikant, High performance filters based on inorganic fibers and inorganic fiber whiskers.
  36. Wilson Doug ; Mathur Raj, High performance filters comprising an inorganic composite substrate and inorganic fiber whiskers.
  37. Doug Wilson ; Raj Mathur, High performance filters comprising inorganic fibers having inorganic fiber whiskers grown thereon.
  38. Seiji Motojima JP, Hollow microfibers and process for producing the same.
  39. Bradley, Keith; Wyatt, Jeff D.; Gabriel, Jean-Christophe P.; Gruner, George, Hydrogen storage and supply system.
  40. Bradley, Keith; Wyatt, Jeff; Jhi, Seung-Hoon; Kwon, Young-Kyun; Gabriel, Jean Christophe; Gruner, George, Hydrogen storage and supply system.
  41. Wang,Xingwu; Weiner,Michael L., Hydrogen storage apparatus comprised of halloysite.
  42. Maeland Arnulf Julius ; Skjeltorp Arne Torbj.o slashed.rn,NOX, Hydrogen storage in carbon material.
  43. Bradley, Keith; Collins, Philip G.; Gabriel, Jean-Christophe P.; Kwon, Young-Kyun; Jhi, Seung-Hoon; Gruner, George, Hydrogen storage in nanostructure with physisorption.
  44. Kojima,Yoshitsugu; Kawai,Yasuaki, Hydrogen storage material and hydrogen storage apparatus.
  45. Nazri Gholam-Abbas, Hydrogen storage systems and method of making them.
  46. Cooper, Alan Charles; Pez, Guido Peter, Hydrogen storage using carbon-metal hybrid compositions.
  47. Taylor, Tommy G., Incineration system for refuse-derived fuels, coal and petroleum coke, or chlorinated hydrocarbons.
  48. Dai,Hongjie, Integrated nanotube sensor.
  49. Baker, R. Terry K.; Rodriguez, Nelly M., Lithium ion battery containing an anode comprised of graphitic carbon nanofibers.
  50. Wang,Ning; Dong,Yi; Li,Yi Qun, Low platinum fuel cell catalysts and method for preparing the same.
  51. Gu, Tao; Omstead, Thomas R.; Wang, Ning; Dong, Yi; Li, Yi-Qun, Low platinum fuel cells, catalysts, and method for preparing the same.
  52. Autrey,Thomas S.; Gutowska,Anna; Shin,Yongsoon; Li,Liyu, Materials for storage and release of hydrogen and methods for preparing and using same.
  53. Wolfe, James Douglas, Method and apparatus for hydrogen storage and retrieval.
  54. Kindbeiter, Francis; Rigaud, Laurent, Method for filling a gas storage tank.
  55. Rodriguez Nelly M. ; Baker R. Terry K., Method for introducing hydrogen into layered nanostructures.
  56. Harutyunyan,Avetik; Pradhan,Bhabendra K.; Eklund,Peter C., Method for low temperature synthesis of single wall carbon nanotubes.
  57. Harutyunyan, Avetik R.; Grigorian, Leonid, Method for producing carbonaceous articles.
  58. Baker,R. Terry K.; Rodriguez,Nelly M., Method for producing powdered metal catalysts.
  59. Struthers, Ralph C.; Chang, David B.; Toossi, Reza; Ahdout, Sion; Li, Lijuan; Palomba, Robert G., Method for sorption and desorption of molecular gas contained by storage sites of nano-filament laded reticulated aerogel.
  60. Jang,Bor Z., Nanocomposite compositions for hydrogen storage and methods for supplying hydrogen to fuel cells.
  61. Regan,Brian C.; Aloni,Shaul; Zettl,Alexander K., Nanoscale mass conveyors.
  62. Williamson,Andrew J.; Reboredo,Fernando A., Nanostructured materials for hydrogen storage.
  63. Zhou Otto Z. ; Gao Bo, Nanotube-based high energy material and method.
  64. Yenilmez,Erhan; Dai,Hongjie, Patterned growth of single-walled carbon nanotubes from elevated wafer structures.
  65. Dai,Hongjie; Chen,Robert J., Photodesorption in carbon nanotubes.
  66. Putyera Karol ; Contescu Cristian I. ; Amankwah Kwabena A. G. ; Amato Wayne S., Post-carbonization treatment of microporous carbons for enhancement of methane and natural gas storage properties.
  67. Yamada,Atsuo; Kajiura,Hisashi; Shiraishi,Masashi; Maruyama,Ryuichiro; Watanabe,Yasuhiro; Nakamura,Takahiro; Miyazawa,Hiroshi, Power generating apparatus having a proton conductor unit that includes a fullerene derivative.
  68. Baker, R. Terry K.; Rodriguez, Nelly M., Preparation of multifaceted graphitic nanotubes.
  69. Jin Sungho ; Kochanski Gregory Peter ; Zhu Wei, Process for fabricating article comprising aligned truncated carbon nanotubes.
  70. Bouchard, Robert Joseph; Cheng, Lap-Tak Andrew; Roach, David Herbert, Process for improving the emission of electron field emitters.
  71. Bouchard, Robert Joseph; Cheng, Lap-Tap Andrew; Roach, David Herbert; Lavin, John Gerard, Process for improving the emission of electron field emitters.
  72. Bouchard,Robert Joseph; Cheng,Lap Tak Andrew; Lavin,John Gerald; Roach,David Herbert, Process for improving the emission of electron field emitters.
  73. Bouchard,Robert Joseph; Cheng,Lap Tak Andrew; Lavin,John Gerard; Roach,David Herbert, Process for improving the emission of electron field emitters.
  74. Roach,David Herbert, Process for improving the emissions of electron field emitters.
  75. Polverejan,Mihai; Marotta,Christopher; Baker,R. Terry K., Process of converting ethylbenzene to styrene using a graphite nanocatalysts.
  76. Cheng, Huiming; Liu, Chang; Cong, Hongtao; Liu, Min; Fan, Yueying; Su, Ge, Production of single-walled carbon nanotubes by a hydrogen arc discharge method.
  77. Cooper, Christopher H.; Cummings, Alan G.; Starostin, Mikhail Y.; Honsinger, Charles P., Purification of fluids with carbon nanotubes having attached functional group.
  78. Burk, Roland; Watzlawski, Markus; Zwittig, Eberhard, Sorber heat exchanger wall and sorber heat exchanger.
  79. Wang,Xingwu; Greenwald,Howard J., Storage assembly.
  80. Struthers,Ralph C.; Chang,David B.; Toossi,Reza; Ahdout,Sion; Li,Lijuan; Palomba,Robert G., Storage device and method for sorption and desorption of molecular gas contained by storage sites of nano-filament laded reticulated aerogel.
  81. Shiflett, Mark Brandon; Sabesan, Subramaniam; Lustig, Steven Raymond; Gai, Pratibha Laxman, Storage materials for hydrogen and other small molecules.
  82. Shiflett, Mark Brandon; Sabesan, Subramaniam; Lustig, Steven Raymond; Gai, Pratibha Laxman, Storage materials for hydrogen and other small molecules.
  83. Hussain, Syed; Sirosh, Neel, Systems and method for storing hydrogen.
  84. Gunderman, Robert D.; Hammond, John M., Ultracapacitors comprised of mineral microtubules.
  85. Gunderman,Robert D.; Hammond,John M, Ultracapacitors comprised of mineral microtubules.
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