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纳米银/环氧树脂复合材料的制备及其介电性能的研究(英文) 被引量:9

Study on Preparation and Dielectric Properties of Nano-Ag/Epoxy Resin Composite
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摘要 采用紫外辐照还原的方法制备了纳米银粒子,研究了保护剂的添加、辐照强度和溶液配比等因素对纳米银粒子尺寸的影响。TEM反映出银粒子分散均匀,其粒度约为20nm。将制备出的纳米银与环氧树脂混合固化形成纳米复合电介质,研究了这种复合材料的介电性能:室温下复合材料的体积电阻率和工频击穿场强随着纳米银粒子的加入有所提高,介质损耗略有降低,而介电常数变化不大。结果表明,纳米银粒子能够提高基体聚合物的介电性能。这一现象可用库仑阻塞机制解释。 Silver (Ag) nano-particles were prepared through ultraviolet radiation reduction and then the influence of protecting agent, intensity of radiation and mixture ration on nano-Ag particle sizes was studied. TEM result shows that Ag particles were dispersed evenly in solution and the particle size was about 20 nm. Nano-dielectric of nano-Ag/epoxy resin composite was prepared by solidification successfully. The dielectric property of the composite is discussed. The result is that resistivity (ρv) and breakdown electric-field intensity (Eb) at room temperature are improved; the dielectric loss (tanδ) is reduced and the permittivity (εr) changes little. It can he seen that the dielectric property of polymer material is improved by adding nano-Ag particles. This phenomenon can he explained by Coulomb block effect.
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2007年第8期1369-1372,共4页 Rare Metal Materials and Engineering
基金 National Science Foundation of China(50277029)
关键词 纳米银 紫外辐照还原 复合材料 介电性能 库伦阻塞效应 nano-Ag ultraviolet radiation reduction reaction composite dielectric property Coulomb block effect
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参考文献6

  • 1Zhang Lide(张立德) et al.Nanomaterial and Nanostructure (纳米材料和纳米结构)[M].Beijing:Science Press,2001:51
  • 2Zhang Zhikun(张志焜),Cui Zuolin(崔作林).Nanotechnique and Nanomaterial(纳米技术与纳米材料)[M].Beijing:National Defence Industry Press,2001:110
  • 3曹晓珑,徐曼,刘春涛.纳米添加剂对聚合物击穿性能的影响[J].电工技术学报,2006,21(2):8-12. 被引量:32
  • 4Tsu R,Li Xiaolei.Appl.Phys Lett[J],1994,65(7):842
  • 5Feng Qunqiang,Dang Zhimin,Li Na et al.Materials Science and Engineering:B[J],2003,99(1-3):325
  • 6冯军强,徐曼,曹晓珑.纳米Ag/PAM/EVA复合材料的制备及介电特性[J].稀有金属材料与工程,2006,35(1):85-88. 被引量:5

二级参考文献24

  • 1冯军强,徐曼,郑晓泉,曹晓珑.Ag/PVA纳米聚合物基复合材料的制备及其电性能研究[J].中国电机工程学报,2004,24(6):92-95. 被引量:23
  • 2Hhenglein A.Chem Rev[J],1989,89:1861.
  • 3Bloemer M J,Haus J W,Ashley P R.J Opt Soc Am B[J],1990,7(5):790.
  • 4Siegel R W.MaterSci Eng[J],1993,B19:37.
  • 5Dang Z M,Shen Y,Nan C W.Appl Phys Lett[J],2002,81,4814.
  • 6Dang Z M,Lin Y H,Nan C W.Adv Mater[J],2003,19,1625.
  • 7Scott-Thomas J H F et al.Phys Rev Lett[J],1989,62:583.
  • 8Kuzmin L S et al.JETPLett[J],1987,45:495.
  • 9Mullen K et al.Phys Rev[J],1988,B37:98.
  • 10Glazman L I et al.J Appl Phys Condens Matter[J],1989:5811.

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