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Nanoclay-Directed Structure and Morphology in PVDF Electrospun Membranes

机译:PVDF电纺膜的纳米粘土定向结构和形貌

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The incorporation of organically modified Lucentite nanoclay dramatically modifies the structure and morphology of the PVDF electrospun fibers. In a molecular level, the nanoclay preferentially stabilizes the all-trans conformation of the polymer chain, promoting anαtoβtransformation of the crystalline phase. The piezoelectric properties of theβ-phase carry great promise for energy harvest applications. At a larger scale, the nanoclay facilitates the formation of highly uniform, bead-free fibers. Such an effect can be attributed to the enhanced conductivity and viscoelasticity of the PVDF-clay suspension. The homogenous distribution of the directionally aligned nanoclays imparts advanced mechanical properties to the nanofibers.
机译:有机改性的Lucentite纳米粘土的加入极大地改变了PVDF电纺纤维的结构和形态。在分子水平上,纳米粘土优先稳定聚合物链的全反式构象,从而促进结晶相的α至β转变。 β相的压电性质在能量收集应用中具有广阔的前景。在更大的规模上,纳米粘土促进了高度均匀的无珠纤维的形成。这种作用可以归因于PVDF-粘土悬浮液的增强的电导率和粘弹性。定向排列的纳米粘土的均匀分布赋予纳米纤维先进的机械性能。

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