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Production of single-walled carbon nanotubes by a hydrogen arc discharge method 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • D01F-009/12
출원번호 US-0588568 (2000-06-07)
우선권정보 CN-1999113022 (1999-06-16)
발명자 / 주소
  • Cheng, Huiming
  • Liu, Chang
  • Cong, Hongtao
  • Liu, Min
  • Fan, Yueying
  • Su, Ge
출원인 / 주소
  • Institute of Metal Research of The Chinese Academy of Sciences
대리인 / 주소
    Smith, Gambrell & Russell, LLP
인용정보 피인용 횟수 : 90  인용 특허 : 3

초록

A method for producing a single-walled carbon nanotube product by a hydrogen arc discharge method includes providing an anode including graphite powder, catalyst metal, and a growth promoter in an atmosphere containing hydrogen; providing a cathode in the atmosphere; and inducing an electric arc acr

대표청구항

A method for producing a single-walled carbon nanotube product by a hydrogen arc discharge method includes providing an anode including graphite powder, catalyst metal, and a growth promoter in an atmosphere containing hydrogen; providing a cathode in the atmosphere; and inducing an electric arc acr

이 특허에 인용된 특허 (3)

  1. Yoder Max N. (Falls Church VA), Atomic layer epitaxy (ALE) apparatus for growing thin films of elemental semiconductors.
  2. Tsuboi Toshiyuki,JPX ; Kobayashi Haruhiro,JPX ; Nawamaki Kenji,JPX, Method for preparing single layer carbon nano-tube.
  3. Rodriguez Nelly M. (State College PA) Baker R. Terry K. (State College PA), Storage of hydrogen in layered nanostructures.

이 특허를 인용한 특허 (90)

  1. Yin, Qinghua; Qi, Xiwang; Biberger, Maximilian A., Advanced catalysts for automotive applications.
  2. Yin, Qinghua; Qi, Xiwang; Biberger, Maximilian A., Advanced catalysts for automotive applications.
  3. Yin, Qinghua; Qi, Xiwang; Biberger, Maximilian A., Advanced catalysts for automotive applications.
  4. Miller, Seth Adrian; Yager, Thomas A., Alteration of graphene defects.
  5. Pesiri, David Richard, Apparatus for and method of sampling and collecting powders flowing in a gas stream.
  6. Nam, Joong-Woo, Carbon nanotube, electron emission source including the carbon nanotube, electron emission device including the electron emission source, and method of manufacturing the electron emission device.
  7. Yin, Qinghua; Qi, Xiwang; Biberger, Maximilian A., Catalyst design for heavy-duty diesel combustion engines.
  8. Yin, Qinghua; Qi, Xiwang; Biberger, Maximilian A., Catalyst design for heavy-duty diesel combustion engines.
  9. Yin, Qinghua; Qi, Xiwang; Biberger, Maximilian A., Catalyst design for heavy-duty diesel combustion engines.
  10. Leamon, David, Catalyst production method and system.
  11. Yin, Qinghua; Qi, Xiwang; Biberger, Maximilian A.; Sarkar, Jayashir, Coated substrates for use in catalysis and catalytic converters and methods of coating substrates with washcoat compositions.
  12. Yin, Qinghua; Qi, Xiwang; Biberger, Maximilian A.; Sarkar, Jayashir, Coated substrates for use in catalysis and catalytic converters and methods of coating substrates with washcoat compositions.
  13. Yin, Qinghua; Qi, Xiwang; Biberger, Maximilian A.; Sarkar, Jayashir, Coated substrates for use in catalysis and catalytic converters and methods of coating substrates with washcoat compositions.
  14. Layman, Frederick P.; Biberger, Maximilian A., Collecting particles from a fluid stream via thermophoresis.
  15. Biberger, Maximilian A.; Kearl, Bryant; Yin, Qinghua; Qi, Xiwang, Compositions for passive NOx adsorption (PNA) systems and methods of making and using same.
  16. Biberger, Maximilian A.; Kearl, Bryant; Yin, Qinghua; Qi, Xiwang, Compositions for passive NOx adsorption (PNA) systems and methods of making and using same.
  17. Kearl, Bryant; Yin, Qinghua; Qi, Xiwang; Leamon, David; Biberger, Maximilian A., Compositions of lean NOx trap (LNT) systems and methods of making and using same.
  18. Moravsky, Alexander P.; Loutfy, Raouf O., Double-walled carbon nanotubes and methods for production and application.
  19. Smith, Michael W.; Park, Cheol, Fine-grained targets for laser synthesis of carbon nanotubes.
  20. Smith, Michael W.; Park, Cheol, Fine-grained targets for laser synthesis of carbon nanotubes.
  21. Layman, Frederick P., Fluid recirculation system for use in vapor phase particle production system.
  22. Layman, Frederick P., Fluid recirculation system for use in vapor phase particle production system.
  23. Layman, Fredrick P., Fluid recirculation system for use in vapor phase particle production system.
  24. Kevwitch, Rob; Biberger, Maximilian A., Formation of catalytic regions within porous structures using supercritical phase processing.
  25. Yin, Qinghua; Qi, Xiwang; Biberger, Maximilian A.; Leamon, David, Fracture toughness of ceramics.
  26. Yin, Qinghua; Qi, Xiwang; Biberger, Maximilian A.; Leamon, David, Fracture toughness of glass.
  27. Layman, Fredrick P., Gas delivery system with constant overpressure relative to ambient to system with varying vacuum suction.
  28. Layman, Fredrick P., Gas delivery system with constant overpressure relative to ambient to system with varying vacuum suction.
  29. Layman, Frederick P., Glove box.
  30. Biberger, Maximilian A.; Layman, Frederick P., Highly turbulent quench chamber.
  31. Biberger, Maximilian A.; Layman, Frederick P., Highly turbulent quench chamber.
  32. Wang,Xingwu; Weiner,Michael L., Hydrogen storage apparatus comprised of halloysite.
  33. Biberger, Maximilian A., Impact resistant material.
  34. Biberger, Maximilian A., Impact resistant material.
  35. Lehman, Jr., Stephen Edward, In situ oxide removal, dispersal and drying.
  36. Lehman, Jr., Stephen Edward, In situ oxide removal, dispersal and drying for copper copper-oxide.
  37. Lehman, Jr., Stephen Edward, In situ oxide removal, dispersal and drying for silicon SiO2.
  38. Grah, Michael D., Increasing the gas transmission rate of a film comprising fullerenes.
  39. Ding, Rui-dong; Newell, Clint, Ionomeric nanocomposites and articles therefrom.
  40. Layman, Frederick P.; Biberger, Maximilian A., Long cool-down tube with air input joints.
  41. Gu, Tao; Omstead, Thomas R.; Wang, Ning; Dong, Yi; Li, Yi-Qun, Low platinum fuel cells, catalysts, and method for preparing the same.
  42. Takikawa, Hirofumi; Hibi, Yoshihiko, METHOD FOR MANUFACTURING NANO-TUBE, NANO-TUBE MANUFACTURED THEREBY, APPARATUS FOR MANUFACTURING NANO-TUBE, METHOD FOR PATTERNING NANO-TUBE, NANO-TUBE MATERIAL PATTERNED THEREBY, AND ELECTRON EMISSION.
  43. Biberger, Maximilian A., Method and apparatus for making recyclable catalysts.
  44. Biberger, Maximilian A.; Layman, Frederick P., Method and apparatus for making uniform and ultrasmall nanoparticles.
  45. Biberger, Maximilian A.; Layman, Frederick P., Method and apparatus for making uniform and ultrasmall nanoparticles.
  46. Biberger, Maximilian A.; Lehman, Jr., Stephen Edward; Kevwitch, Robert Matthew; Yin, Qinghua; Kingsley, Jesudos J., Method and system for forming plug and play metal catalysts.
  47. Biberger, Maximilian A.; Lehman, Jr., Stephen Edward; Kevwitch, Robert Matthew; Yin, Qinghua; Kingsley, Jesudos J., Method and system for forming plug and play metal catalysts.
  48. Biberger, Maximilian A.; Lehman, Jr., Stephen Edward; Kevwitch, Robert Matthew; Yin, Qinghua; Kingsley, Jesudos J., Method and system for forming plug and play metal catalysts.
  49. Biberger, Maximilian A.; Lehman, Jr., Stephen Edward; Kevwitch, Robert Matthew; Yin, Qinghua; Kingsley, Jesudos J., Method and system for forming plug and play metal catalysts.
  50. Biberger, Maximilian A.; Lehman, Jr., Stephen Edward; Kevwitch, Robert Matthew; Yin, Qinghua; Kingsley, Jesudos J., Method and system for forming plug and play metal catalysts.
  51. Biberger, Maximilian A.; Lehman, Jr., Stephen Edward; Kevwitch, Robert Matthew; Yin, Qinghua; Kingsley, Jesudos J., Method and system for forming plug and play metal compound catalysts.
  52. Biberger, Maximilian A.; Lehman, Jr., Stephen Edward; Kevwitch, Robert Matthew; Yin, Qinghua; Kingsley, Jesudos J., Method and system for forming plug and play metal compound catalysts.
  53. Biberger, Maximilian A.; Lehman, Jr., Stephen Edward; Kevwitch, Robert Matthew; Yin, Qinghua; Kingsley, Jesudos J., Method and system for forming plug and play metal compound catalysts.
  54. Biberger, Maximilian A.; Lehman, Jr., Stephen Edward; Kevwitch, Robert Matthew; Yin, Qinghua, Method and system for forming plug and play oxide catalysts.
  55. Biberger, Maximilian A.; Lehman, Jr., Stephen Edward; Kevwitch, Robert Matthew; Yin, Qinghua, Method and system for forming plug and play oxide catalysts.
  56. Biberger, Maximilian A.; Lehman, Jr., Stephen Edward; Kevwitch, Robert Matthew; Yin, Qinghua, Method and system for forming plug and play oxide catalysts.
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  58. Fan, Shou Shan; Liu, Liang, Method for manufacturing isotope-doped carbon nanotubes.
  59. Yin, Qinghua; Qi, Xiwang; Biberger, Maximilian A., Method of forming a catalyst with inhibited mobility of nano-active material.
  60. Yin, Qinghua; Qi, Xiwang; Biberger, Maximilian A., Method of forming a catalyst with inhibited mobility of nano-active material.
  61. Biberger, Maximilian A., Method of forming oxide dispersion strengthened alloys.
  62. Grah,Michael D.; Havens,Marvin R., Method of increasing the gas transmission rate of a film.
  63. Bae, Eun Ju; Min, Yo Sep; Park, Wan Jun, Method of removing carbonaceous impurities in carbon nanotubes.
  64. Grah,Michael D.; Havens,Marvin R., Method of shrinking a film.
  65. Leamon, David; Layman, Frederick P.; Ruiz, Eliseo; Biberger, Maximilian A., Methods and apparatuses for nano-materials powder treatment and preservation.
  66. Moravsky, Alexander P.; Loutfy, Raouf O., Methods for production of double-walled carbon nanotubes.
  67. Layman, Fredrick P., Microwave purification process.
  68. Biberger, Maximilian A., Nano-skeletal catalyst.
  69. Biberger, Maximilian A., Nano-skeletal catalyst.
  70. Layman, Frederick P.; Leamon, David, Non-plugging D.C. plasma gun.
  71. Yin, Qinghua; Qi, Xiwang; Ruiz, Eliseo, Pinning and affixing nano-active material.
  72. Yin, Qinghua; Qi, Xiwang; Ruiz, Eliseo, Pinning and affixing nano-active material.
  73. Biberger, Maximilian A.; Layman, Frederick P., Plasma-arc vaporization chamber with wide bore.
  74. Leamon, David, Powder treatment for enhanced flowability.
  75. Biberger, Maximilian A., Sandwich of impact resistant material.
  76. Biberger, Maximilian A., Sandwich of impact resistant material.
  77. Biberger, Maximilian A., Sandwich of impact resistant material.
  78. Layman, Frederick P.; Biberger, Maximilian A., Shape of cone and air input annulus.
  79. Wang,Xingwu; Greenwald,Howard J., Storage assembly.
  80. Rao,Apparao M.; Rao,Rahul, Thermal CVD synthesis of nanostructures.
  81. Qi, Xiwang; Biberger, Maximilian A., Three-way catalytic converter using nanoparticles.
  82. Qi, Xiwang; Biberger, Maximilian A., Three-way catalytic converter using nanoparticles.
  83. Qi, Xiwang; Biberger, Maximilian A., Three-way catalytic converter using nanoparticles.
  84. Gunderman, Robert D.; Hammond, John M., Ultracapacitors comprised of mineral microtubules.
  85. Gunderman,Robert D.; Hammond,John M, Ultracapacitors comprised of mineral microtubules.
  86. Yin, Qinghua; Qi, Xiwang; Biberger, Maximilian A.; Leamon, David, Washcoats and coated substrates for catalytic converters and methods of making and using same.
  87. Van Den Hoek, Willibrordus G. M.; Biberger, Maximilian A., Wet chemical and plasma methods of forming stable PTPD catalysts.
  88. Van Den Hoek, Willibrordus G.M.; Biberger, Maximilian A., Wet chemical and plasma methods of forming stable PtPd catalysts.
  89. van den Hoek, Wilbert; Biberger, Maximilian A., Wet chemical and plasma methods of forming stable PtPd catalysts.
  90. Biberger, Maximilian A., Workflow for novel composite materials.
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