Coetzee Divan, Venkataraman Mohanapriya, Militky Jiri, Petru Michal
Department of Material Engineering, Faculty of Textile Engineering, Technical University of Liberec, 461 17 Liberec, Czech Republic.
Institute for Nanomaterials, Advanced Technologies and Innovation, Department of Machinery Construction, Technical University of Liberec, 461 17 Liberec, Czech Republic.
Polymers (Basel). 2020 Mar 27;12(4):742. doi: 10.3390/polym12040742.
This review analyzes thermal and electrically conductive properties of composites and how they can be influenced by the addition of special nanoparticles. Composite functional characteristics-such as thermal and electrical conductivity, phase changes, dimensional stability, magnetization, and modulus increase-are tuned by selecting suitable nanoparticle filler material. The conductivity of composites can be related to the formation of conductive pathways as nanofiller materials form connections in the bulk of a composite matrix. With increasing use of nanomaterial containing composites and relatively little understanding of the toxicological effects thereof, adequate disposal and recyclability have become an increasing environmental concern.
本综述分析了复合材料的热性能和导电性能,以及添加特殊纳米颗粒如何影响这些性能。通过选择合适的纳米颗粒填充材料,可以调整复合材料的功能特性,如热导率、电导率、相变、尺寸稳定性、磁化强度和模量增加等。复合材料的导电性与导电通路的形成有关,因为纳米填充材料在复合材料基体中形成连接。随着含纳米材料复合材料的使用日益增加,而对其毒理学影响的了解相对较少,妥善处置和可回收性已成为一个日益受到关注的环境问题。