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题名: The Application of Nano Carbon Based Materials in Electrical Conductive Adhesives
作者: Luo, J(罗杰); Li, CW(李朝威); Lan, ZY; Chen, MH(陈名海); Yao, YG(姚亚刚); Zhao, Y
通讯作者: Chen, MH (陈名海)
关键词: carbon nanotube ; graphene ; electrical conductive adhesive ; bulk resistivity ; thermal conductivity
刊名: PROGRESS IN CHEMISTRY
发表日期: 2015
DOI: 10.7536/PC150167
卷: 27, 期:9, 页:9
收录类别: SCI
部门归属: 先进材料研究部
英文摘要: Nowadays people have a fancy for good electrically and thermally conductivity adhesives because they have wide applications compared with the ordinary adhesives, especially in the field of electronic packaging. However, the cost is subject to high volume content of the metal fillers, which can't be reduced effectively. This review summarizes the latest research work and analyzes the reported methods aimed to solve this kind of problem in recent years. Nanocarbon materials, such as carbon nanotubes (CNTs) and graphene, have excellent electrical, mechanical and thermal properties, which have been widely used as fillers in the composites. By mixing them with metal fillers, it is able to reduce 10 wt% similar to 20 wt% content of metal fillers. Especially, CNTs as one-dimensional nano material could bridge the neighboring conductive metal fillers for both reducing the metal content and effectively improving the electrical, mechanical and thermal properties of as-prepared composites. By choosing different polymer matrixes such as thermal plastic and thermal set resin, the mechanical properties of the adhesive can be further improved and satisfy with the packaging requirements of flexible electrical devices. In addition, we think that it is a good way to improve the electrical and thermal properties by sintering the nanoparticles at high temperature, which are synthesized by chemistry reaction.
语种: 英语
JCR小类分区: 四区
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内容类型: 期刊论文
URI标识: http://ir.sinano.ac.cn/handle/332007/3318
Appears in Collections:先进材料研究部_姚亚刚团队_期刊论文
先进材料研究部_李清文团队_期刊论文

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Recommended Citation:
Luo, J,Li, CW,Lan, ZY,et al. The Application of Nano Carbon Based Materials in Electrical Conductive Adhesives[J]. PROGRESS IN CHEMISTRY,2015,27(9):9.
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