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Molecular mechanisms for structural changes in poly(vinylidene fluoride) induced by electric field

机译:电场诱导聚偏二氟乙烯结构变化的分子机理

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摘要

Two structural changes in poly(vinylidene fluoride) are known to be caused by application of an electric field: a phase transition from form II to form I via polar II and a poling-induced structural change in form I. In the phase transition from form II to polar II, the molecular orientation must change. This is caused by an inversion motion near the domain boundary of the antiphase domain structure as the polar domain grows in the direction of the b-axis. In the phase transition from polar II to form I, the conformational change from TGT (G) over bar to the planar zigzag is caused by the molecular motion from GT (G) over bar to TTT via the incommensurate form. Two models have been proposed for the reorientation of the molecule in form I crystals induced by poling: the 60 degrees step rotation model and the 180 degrees reversal model. In the present study, the doubly oriented samples in which the b-axis (i.e., the direction of the dipole moment of the molecule) is parallel to the film plane and the c-axis is parallel to the machine direction were poled. No structural change could be observed due to the poling. This supports the 180 degrees reversal model. [References: 24]
机译:已知通过施加电场会导致聚偏二氟乙烯发生两个结构变化:通过极性II从晶型II到晶型I的相变和晶型I的极化诱导结构变化。 II至极性II,分子取向必须改变。这是由于当极性畴沿b轴方向增长时,在反相畴结构的畴边界附近发生反转运动引起的。在从极点II到形式I的相变中,从棒上的TGT(G)到平面之字形的构象变化是由从棒上的GT(G)到TTT的分子运动通过不适当的形式引起的。已经提出了两种模型来对极化引起的晶型I的分子进行重新定向:60度步进旋转模型和180度反转模型。在本研究中,b轴(即分子的偶极矩方向)平行于薄膜平面且c轴平行于纵向的双取向样品被极化。由于极化,未观察到结构变化。这支持180度反转模型。 [参考:24]

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