梁家杰, 王少杰, 罗臻, 何金良, 李琦. 聚合物纳米复合电介质界面微区原位测试研究进展[J]. 中国电机工程学报, 2022, 42(8): 3055-3064. DOI: 10.13334/j.0258-8013.pcsee.220534
引用本文: 梁家杰, 王少杰, 罗臻, 何金良, 李琦. 聚合物纳米复合电介质界面微区原位测试研究进展[J]. 中国电机工程学报, 2022, 42(8): 3055-3064. DOI: 10.13334/j.0258-8013.pcsee.220534
LIANG Jiajie, WANG Shaojie, LUO Zhen, HE Jinliang, LI Qi. Research Progress of In-situ Testing of the Interfacial Region in Dielectric Polymer Nanocomposites[J]. Proceedings of the CSEE, 2022, 42(8): 3055-3064. DOI: 10.13334/j.0258-8013.pcsee.220534
Citation: LIANG Jiajie, WANG Shaojie, LUO Zhen, HE Jinliang, LI Qi. Research Progress of In-situ Testing of the Interfacial Region in Dielectric Polymer Nanocomposites[J]. Proceedings of the CSEE, 2022, 42(8): 3055-3064. DOI: 10.13334/j.0258-8013.pcsee.220534

聚合物纳米复合电介质界面微区原位测试研究进展

Research Progress of In-situ Testing of the Interfacial Region in Dielectric Polymer Nanocomposites

  • 摘要: 聚合物纳米复合电介质具有优异的电学、热学以及力学性能,在电力和能源等领域被广泛应用。研究者们将聚合物纳米复合电介质的特殊性能归因于基体与纳米颗粒之间形成的界面。但是传统的研究手段不能给出界面作用机理的直接证据,因此近年来以原子力显微镜为基础的界面微区原位测试成为重要的研究方法。该文首先对原子力显微镜的基本原理做简要介绍,然后对基于原子力显微镜的微区测试进行综述,包括线性电介质复合材料介电特性、铁电聚合物复合材料极化特性、电荷分布与输运、微区红外光谱等方面,最后对目前聚合物纳米复合电介质材料界面微区原位测试中存在的问题进行讨论,并展望界面微区研究未来的发展方向。

     

    Abstract: Dielectric polymer nanocomposites possess excellent electrical, thermal and mechanical properties, and are widely utilized in power- and energy-related fields. The special properties of dielectric polymer nanocomposites are attributed to the interface formed between the polymer matrix and the nanoparticles. However, conventional analyzing methods cannot provide direct evidence of the interacting mechanism of the interface. The in-situ testing of the interfacial region based on atomic force microscopy (AFM) has thus become an important research direction. This paper provided a review on the recent research progress of the in-situ AFM study of interfacial region in dielectric polymer nanocomposites. First, the working principle of AFM was briefly introduced. Then, the AFM studies on dielectric and polarization properties, charge distribution and transport, and microregion structure were presented. Finally, problems existing in the in-situ AFM testing of interface in dielectric polymer nanocomposites and future development direction of the interface study were discussed.

     

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