首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >PVDF-based composites filled with PZT@Ag core-shell structured particles for enhanced dielectric properties
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PVDF-based composites filled with PZT@Ag core-shell structured particles for enhanced dielectric properties

机译:基于PVDF的复合材料,填充有PZT @ AG核 - 壳结构颗粒,用于增强介电性能

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Polymer-based composites with high dielectric constant and suppressed dielectric loss were successfully fabricated by using PZT@Ag core-shell structured particles as fillers and PVDF as polymer matrix. The PZT@Ag core-shell structured particles were synthesized via conventional solid-state method. The results indicate that the fillers dispersed in the polymer matrix prominently enhance the dielectric constant while keeping the dielectric loss unchanged simultaneously. Composites with high dielectric constant result from the high dielectric constant of PZT itself, the superior interfacial polarization of PZT@Ag core-shell structure and the conductivity of Ag according to percolation theory, while the dielectric loss is suppressed due to the tunneling current decreasing among Ag particles and Coulomb blockade effect.
机译:通过使用PZT @ Ag核 - 壳结构颗粒作为填料和PVDF作为聚合物基质,成功制造具有高介电常数和抑制介电损耗的聚合物基复合材料。 PZT @ Ag核 - 壳结构颗粒通过常规固态方法合成。 结果表明,分散在聚合物基质中的填充剂突出地增强了介电常数,同时保持介电损耗同时保持不变。 具有高介电常数的复合材料由PZT本身的高介电常数,PZT @ Ag核心壳结构的优异界面极化和根据渗透理论的AG导电性,而介电损耗由于隧道电流减小而被抑制 Ag粒子和库仑封锁效果。

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