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Methods to partially reduce a niobium metal oxide oxygen reduced niobium oxides 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C01G-033/00
출원번호 US-0347990 (1999-07-06)
발명자 / 주소
  • James A. Fife
출원인 / 주소
  • Cabot Corporation
인용정보 피인용 횟수 : 101  인용 특허 : 11

초록

Methods to at least partially reduce a niobium oxide are described wherein the process includes heat treating the niobium oxide in the presence of a getter material and in an atmosphere which permits the transfer of oxygen atoms from the niobium oxide to the getter material, and for a sufficient tim

대표청구항

1. A method to at least partially reduce a niobium oxide comprising heat treating the niobium oxide in the presence of a niobium flaked getter material and in an atmosphere which permits the transfer of oxygen atoms from the niobium oxide to the niobium flaked getter material, for a sufficient time

이 특허에 인용된 특허 (11)

  1. Fife James A. (Douglassville PA) Hard Robert A. (Oley PA), Controlling the oxygen content in tantalum material.
  2. Fisher Richard L. (Warren OH), Deoxidation of a refractory metal.
  3. Fisher Richard L. (Warren OH), Deoxidation of titanium and similar metals using a deoxidant in a molten metal carrier.
  4. Worcester Samuel A. (Ogden UT) Case Patti L. (Ogden UT), Direct production of niobium titanium alloy during niobium reduction.
  5. Pozdeev Yuri L.,ILX, Doped sintered tantalum pellets with nitrogen in a capacitor.
  6. Hurd Frank W. (Northfield MN), Metal reduction process.
  7. Hard Robert A. (Oley PA), Method for deoxidizing tantalum material.
  8. Lindmayer Joseph (Bethesda MD), Method of applying an antireflective coating to a solar cell.
  9. Boyarina Maya F. (ulitsa Trefoleva ; 15 ; kv. 92 Leningrad SUX) Vildgrube Vladimir G. (Svetla novsky prospekt ; 44 ; korpus 2 ; kv. 144 Leningrad SUX) Sergeev Jury S. (prospekt Morisa Toreza ; 30 ; k, Non-evaporable getter.
  10. Wurm ; Jorg, Process for deoxidation of refractory metals.
  11. Murayama Tomohiro (Fukuoka JPX) Kanetake Yasuo (Kyoto JPX), Solid electrolytic capacitor and manufacturing method thereof.

이 특허를 인용한 특허 (101)

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  34. Schnitter, Christoph; Wötting, Gerhard, Method for producing solid electrolyte capacitors.
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  37. Kimmel,Jonathon L.; Qiu,Yongjian, Methods of making a niobium metal oxide.
  38. Kitchell,Ricky W.; Wolbach,Heather L., Methods of making a niobium metal oxide.
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  41. Kimmel, Jonathon L.; Kitchell, Ricky W.; Fife, James A., Methods to partially reduce a niobium metal oxide and oxygen reduced niobium oxides.
  42. Kimmel, Jonathon L.; Redd, Randall V., Modified oxygen reduced valve metal oxides.
  43. Kimmel,Jonathon L.; Redd,Randall V., Modified oxygen reduced valve metal oxides.
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  45. Zednickova, Ivana, Multi-anode solid electrolytic capacitor assembly.
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  47. Djebara, Lotfi; Kubes, Ludek; Matousek, Radek; Zednicek, Stanislav, Multiple leadwires using carrier wire for low ESR electrolytic capacitors.
  48. Freeman, Yuri; Lessner, Philip M.; Poltorak, Jeffrey; Hahn, Randolph S., NbO capacitors with improved performance and higher working voltages.
  49. Ning,Gang, Neutral electrolyte for a wet electrolytic capacitor.
  50. Omori, Kazuhiro; Naito, Kazumi; Kawasaki, Toshiya; Kouichi, Wada, Niobium monoxide powder, niobium monoxide sintered body and capacitor using the sintered body.
  51. Djebara, Lotfi; Zednicek, Stanislav; Snitil, Jiri; Navratil, Jiri; Kubes, Ludek, Notched lead wire for a solid electrolytic capacitor.
  52. Reed, David M.; Venigalla, Sridhar; Kerchner, Jeffrey A., Phase formation of oxygen reduced valve metal oxides and granulation methods.
  53. Biler, Martin; Sita, Zdenek, Polymer based solid state capacitors and a method of manufacturing them.
  54. Schnitter, Christoph; Brumm, Holger; Rawohl, Christine; McCracken, Colin, Porous anode bodies comprising niobium suboxide and capacitors containing such anode bodies.
  55. Jones, Brady A.; McCracken, Colin; Fife, James; Margerison, Ian; Karnik, Tomas, Powder modification in the manufacture of solid state capacitor anodes.
  56. Motchenbacher, Charles A.; Robison, James W.; Higgins, Brian J.; Fonville, Thomas J., Production of high-purity niobium monoxide and capacitor production therefrom.
  57. Motchenbacher,Charles A.; Robison,James W.; Higgins,Brian J.; Fonville,Thomas J., Production of high-purity niobium monoxide and capacitor production therefrom.
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  59. Breznova, Hana; Biler, Martin, Sintered anode pellet etched with an organic acid for use in an electrolytic capacitor.
  60. Breznova, Hana; Biler, Martin, Sintered anode pellet treated with a surfactant for use in an electrolytic capacitor.
  61. Schnitter,Christoph; W��tting,Gerhard, Sintered bodies based on niobium suboxide.
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  64. Djebara, Lotfi, Solid electrolytic capacitor assembly with multiple cathode terminations.
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  85. Burke, Michael; Johnson, Daniel, Solid electrolytic capacitor with integrated fuse assembly.
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  97. Djebara, Lotfi; Bates, James S.; Weaver, Mitchell D., Wet electrolytic capacitor containing a recessed planar anode and a restraint.
  98. Karnik, Tomas; Petrzilek, Jan; Biler, Martin, Wet electrolytic capacitor containing an improved anode.
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