多巴胺改性BaTiO3对BaTiO3/PVDF复合材料击穿场强的影响

Effects of dopamine-modified BaTiO3 on breakdown strength of BaTiO3/PVDF composites

  • 摘要: 为了提高BaTiO3/PVDF复合材料的击穿场强。首先, 利用多巴胺对BaTiO3进行表面功能化处理, 得到多巴胺改性的BaTiO3(Dopa@BaTiO3); 然后, 将其与聚偏氟乙烯(PVDF)混合, 采用液相浇铸法制得Dopa@BaTiO3/PVDF复合材料; 最后, 测量了不同Dopa@BaTiO3添加量的Dopa@BaTiO3/PVDF复合材料的击穿场强和介电性能。结果表明:与改性前的BaTiO3/PVDF复合材料相比, Dopa@BaTiO3/PVDF复合材料在击穿场强显著提高的同时, 介电常数基本保持不变; 当Dopa@BaTiO3添加量为3vol%时, 击穿场强为210 kV/mm, 比改性前的复合材料的提高了78%; 当Dopa@BaTiO3添加量为10vol%时, 击穿场强为180 kV/mm, 比改性前的合材料的提高了88%。研究解决了BaTiO3/PVDF复合材料击穿场强较低的问题, 可为同时提高复合材料的介电常数和击穿场强提供参考。

     

    Abstract: In order to improve the breakdown strength of BaTiO3/PVDF composites, first, dopamine was used to functionalize the surface of BaTiO3, and dopamine modified BaTiO3 (DoPa@BaTiO3) was obtained. Then, it was compounded with polyvinylidene fluoride (PVDF), and Dopa@BaTiO3/PVDF composites were prepared via solution casting method. Finally, breakdown strength and dielectric properties of Dopa@BaTiO3/PVDF composites with different Dopa@BaTiO3 addition were measured. The results show that compared with BaTiO3/PVDF composites before modification, the breakdown strength of Dopa@BaTiO3/PVDF composites improves significantly, while the dielectric constant is almost unchanged. When Dopa@BaTiO3 addition is 3vol%, the breakdown strength is 210 kV/mm, which improves by 78% compared with the composites before modification; when Dopa@BaTiO3 addition is 10vol%, the breakdown strength is 180 kV/mm, which improves by 88% compared with the composites before modification. The research solves the problem of low breakdown strength of BaTiO3/PVDF composites, and can provide references to improve the dielectric constant and breakdown strength of composites at the same time.

     

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