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MLCC内电极用超细镍粉的制备进展 被引量:6

Development of Preparation of Ultrafine Nickel Powders Used in MLCC
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摘要 介绍了超细镍粉在MLCC中的应用进展,针对MLCC内电极用镍粉的性能要求,详细地综述了相关超细镍粉的几种制备方法,包括液相还原法、喷雾热解法、等离子法、气相法和固相分解法等。最后,对MLCC内电极用超细镍粉的发展方向作了展望。 The development of the application of ultrafine nickel powders in MLCC and the properties of the nickel powders were briefly introduced. Then several preparation methods of ultrafine nickel powders used in MLCC were reviewed, including liquid phase reduction, spray pyrolysis, plasma method, gas method and solid decomposition. In the end, the prospect of the ultrafine nickel powders used in MLCC was discussed.
出处 《电子元件与材料》 CAS CSCD 北大核心 2006年第10期6-9,共4页 Electronic Components And Materials
基金 国家自然科学基金资助项目(50574083)
关键词 电子技术 超细镍粉 综述 MLCC 制备 应用 electronic technology ultrafine nickel powder review MLCC preparation application
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参考文献20

  • 1杨邦朝,冯哲圣,卢云.多层陶瓷电容器技术现状及未来发展趋势[J].电子元件与材料,2001,20(6):17-19. 被引量:37
  • 2Tony Addona, Pierre Auger, Cesur Celik, et al. Nickel and copper powders for high-capacitance MLCC manufacture[J]. Passive Compon Ind, 1999,(11-12): 14-18.
  • 3Zhang F B, Chen Y T, Zhao J Z, et al. Preparation of nanosized nickel particles by hydrothermal method[J]. Chem Left, 2004, 33(2): 143- 147.
  • 4张楠,翟秀静,翟玉春.超细镍粉的溶液还原法制备研究[J].功能材料,1999,30(3):263-264. 被引量:27
  • 5梁焕珍.Ni(OH)_2水浆蒽醌催化水热还原制备超细镍粉[J].化工冶金,1995,16(4):307-311. 被引量:12
  • 6Tao X J, Li Z W, Chen H J, et al. A new approach to synthesize nickel nanoparticles[J]. Acta Phys-chim Sci, 2005, 21(5): 569-572.
  • 7沈勇,张宗涛,赵斌,朱裕贞,胡黎明,戴慕仉.高分子保护溶液还原法制备球形超细镍粉[J].化学通报,1996(1):41-42. 被引量:6
  • 8Kim K H, Park H C, Lee S D, et al. Preparation of submicron nickel powders by microwave-assisted hydrothermal method[J]. Mater Chem Phys, 2005, 92: 234-239.
  • 9Kim K N, Kim S G. Nickel particles prepared from nickel nitrate with and without urea by spray pyrolysis[J]. Powder Technol, 2004, 145: 155- 162.
  • 10Che S, Takada K, Mizutzni N. Formation of spherical dense nickel particles by pyrolyzing the aerosol of an ammine complex solution in nitrogen amaosphere[J]. J Mater Sci Lett, 1998,17: 1227-1230.

二级参考文献22

  • 1冯改山.超细粉生产技术的新发展[J].硅酸盐通报,1993,12(2):43-47. 被引量:16
  • 2Liu P, Wang Y M. Study on twin stacking faults in ultrafine nickel[J]. Materials and Design, 2000, 21:155 - 157.
  • 3Ruslan Z, Valiev. Structure and mechanical properties of ultrafine-grained metals[J]. Matel Sci Eng A,1997, 234-236:50-66.
  • 4Gangopadhyay S, Hadjipanayis G C. Magnetic properties of ultrafine particles[J]. Physical Review, 1992,45(17):9778- 9783.
  • 5Cranqvist C G, Buhrman R A. Ultrafine metal particle[J]. J Appl Phys, 1976, 47:2200-2219.
  • 6Saito Y, Mihama K, Uyeda R. Formation of ultrafine metal particles by gas-evaparation[J]. Japan J Appl Phys, 1980, 19(9): 1603-1610.
  • 7Birriger R, Gleiten H, Klein H P. Synthesis of n-metals[J]. Phys Lett A, 1984, 102, 365-369.
  • 8LIN Jun. Gold-coated iron nanoparticles: synthesis,characterization, and magnetic field-induced self-assembly[J]. Journal of Solid State Chemistry, 2001,159:26-31.
  • 9Joe A, Kwan W. Arc-discharge ion sources for heavyi on fusion[J]. Nuclear Instruments and Methods in Physics Research A, 2001, 464:569-575.
  • 10Cui Z L, Dong L F, Hao C C. Microstructure and magnetic property of nano-Fe particles prepared by hydrogen arc plasma[J]. Matel Sci Eng A, 2000, 286..205 - 207.

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