4.6 Review

Research Progress of Polymers/Inorganic Nanocomposite Electrical Insulating Materials

期刊

MOLECULES
卷 27, 期 22, 页码 -

出版社

MDPI
DOI: 10.3390/molecules27227867

关键词

polymers; inorganic; nanocomposite dielectric

资金

  1. colleges young creative talents project of Guangdong province [2020KQNCX118]
  2. Priority areas special project of regular universities in Guangdong province [2021ZDZX1058]
  3. Science and Technology Foundation of Guangdong Province [2021A0101180005]

向作者/读者索取更多资源

With the rapid development of various industries, nanocomposite electrical insulating materials have become widely used due to their excellent physical and mechanical properties. These materials exhibit unique electrical, thermal, sound, light, and magnetic properties. This article introduces the effects of nanoparticles and the interaction mechanisms between nanoparticles and polymer matrix, and summarizes the impact of interfaces on composite materials and the current research status of nanocomposite dielectric materials in the electrical insulation field.
With the rapid development of power, energy, electronic information, rail transit, and aerospace industries, nanocomposite electrical insulating materials have been begun to be widely used as new materials. Polymer/inorganic nanocomposite dielectric materials possess excellent physical and mechanical properties. In addition, numerous unique properties, such as electricity, thermal, sound, light, and magnetic properties are exhibited by these materials. First, the macroscopic quantum tunneling effect, small-size effect, surface effect, and quantum-size effect of nanoparticles are introduced. There are a few anomalous changes in the physical and chemical properties of the matrix, which are caused by these effects. Second, the interaction mechanism between the nanoparticles and polymer matrix is introduced. These include infiltration adsorption theory, chemical bonding, diffusion theory, electrostatic theory, mechanical connection theory, deformation layer theory, and physical adsorption theory. The mechanism of action of the interface on the dielectric properties of the composites is summarized. These are the interface trap effect, interface barrier effect, and homogenization field strength effect. In addition, different interfacial structure models were used to analyze the specific properties of nanocomposite dielectric materials. Finally, the research status of the dielectric properties of nanocomposite dielectric materials in the electrical insulation field is introduced.

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