Wang Tian-Yu, Li Xiao-Fen, Liu Shu-Ming, Liu Bai-Xin, Liang Xi-Dong, Li Shunning, Zhang Gui-Xin, Liu Jian-Bo, Dang Zhi-Min
State Key Laboratory of Control and Simulation of Power System and Generation Equipment, Department of Electrical Engineering, Tsinghua University, Beijing, 100084, China.
Key Laboratory of Advanced Materials (MOE), School of Materials Science and Engineering, Tsinghua University, Beijing, 100084, China.
Nano Converg. 2022 Dec 9;9(1):55. doi: 10.1186/s40580-022-00346-2.
Polymer dielectrics are insulators or energy storage materials widely used in electrical and electronic devices. Polymer dielectrics are needed with outstanding dielectric characteristics than current technologies. In this study, the self-assembly of boron nitride nanosheets (BNNSs) was applied to form an inorganic-organic nanocoating on various common polymer dielectrics. It is inexpensive and easy to fabricate this thin coating on a large scale. The coating has a wide bandgap and thus can significantly improve the breakdown strength of polymer dielectrics. The charge characteristics and trapping parameters of nano-domains on the surfaces of polymer dielectrics were measured, and the coating had shallow trap levels. This facilitated the dissipation of surface charges and thus greatly increased the flashover voltage. The coating also effectively improved the temperature stability and dielectric constant of the polymer dielectric. This nanocoating shows potential as a method to effectively improve the dielectric characteristics of polymer dielectrics and outperform existing composite polymer dielectrics, which are crucial for large-scale applications in energy storage and power and electronic devices.
聚合物电介质是广泛应用于电气和电子设备中的绝缘体或储能材料。与当前技术相比,需要具有优异介电特性的聚合物电介质。在本研究中,应用氮化硼纳米片(BNNSs)的自组装在各种常见聚合物电介质上形成无机-有机纳米涂层。大规模制备这种薄涂层既廉价又容易。该涂层具有宽带隙,因此可以显著提高聚合物电介质的击穿强度。测量了聚合物电介质表面纳米域的电荷特性和俘获参数,该涂层具有浅陷阱能级。这有利于表面电荷的消散,从而大大提高了闪络电压。该涂层还有效地提高了聚合物电介质的温度稳定性和介电常数。这种纳米涂层显示出作为有效改善聚合物电介质介电特性的方法的潜力,并且优于现有的复合聚合物电介质,这对于储能以及电力和电子设备的大规模应用至关重要。