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Influence of zeolite structure and chemistry on the electrical response and crystallization phase of poly(vinylidene fluoride)

机译:沸石的结构和化学性质对聚偏二氟乙烯的电响应和结晶相的影响

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摘要

Zeolites with framework types LTL, LTA, FAU, and MFI were synthesized and used as fillers to prepare PVDF/zeolite composites. The obtained composites showed structural and electrical dependence on the pore system and chemical content of the inorganic host. The larger polymer-zeolite electrostatic interactions of the Y and A zeolites lead the polymer to crystallize in the electroactive c-phase, which in the case of the L zeolite is prevented due to the reduced interaction area. The solvent and water encapsulation ability of the zeolite as well as improve of the dielectric response of the composite is directly related to the Si/Al ratio, leading zeolites with lower Si/Al ratios to larger dielectric responses and encapsulation efficiencies in the composites. These effects show also some dependency on the dimensionality of the pore system; the zeolite L-containing 1D channels showing superior dielectric performance than the 3D pore system of zeolite Y.
机译:合成了骨架类型为LTL,LTA,FAU和MFI的沸石,并将其用作填料以制备PVDF /沸石复合材料。所获得的复合材料显示出对孔隙系统和无机主体的化学含量的结构和电学依赖性。 Y和A型沸石的较大的聚合物-沸石静电相互作用导致聚合物在电活性c相中结晶,在L型沸石的情况下,由于减小的相互作用面积而被阻止。沸石的溶剂和水包封能力以及复合材料的介电响应的改善与Si / Al比直接相关,导致具有较低Si / Al比的沸石导致更大的介电响应和复合材料的包封效率。这些效果还显示出对孔系统尺寸的某种依赖性。含L沸石的1D通道显示出比Y沸石的3D孔系统优越的介电性能。

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