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Charge collection kinetics on ferroelectric polymer surface using charge gradient microscopy

机译:使用电荷梯度显微镜在铁电聚合物表面上的电荷收集动力学

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摘要

A charge gradient microscopy (CGM) probe was used to collect surface screening charges on poly(vinylidene fluoride-trifluoroethylene) [P(VDF-TrFE)] thin films. These charges are naturally formed on unscreened ferroelectric domains in ambient condition. The CGM data were used to map the local electric current originating from the collected surface charges on the poled ferroelectric domains in the P(VDF-TrFE) thin films. Both the direction and amount of the collected current were controlled by changing the polarity and area of the poled domains. The endurance of charge collection by rubbing the CGM tip on the polymer film was limited to 20 scan cycles, after which the current reduced to almost zero. This degradation was attributed to the increase of the chemical bonding strength between the external screening charges and the polarization charges. Once this degradation mechanism is mitigated, the CGM technique can be applied to efficient energy harvesting devices using polymer ferroelectrics.
机译:使用电荷梯度显微镜(CGM)探针收集聚偏二氟乙烯-三氟乙烯[P(VDF-TrFE)]薄膜上的表面筛选电荷。这些电荷在环境条件下自然会在未屏蔽的铁电畴上形成。 CGM数据用于绘制局部电流,该局部电流源自P(VDF-TrFE)薄膜中极化铁电畴上收集的表面电荷。通过改变极性域的极性和面积来控制收集电流的方向和量。通过在聚合物薄膜上摩擦CGM尖端,电荷收集的持久性被限制为20个扫描周期,此后电流减小到几乎为零。这种降解归因于外部屏蔽电荷和极化电荷之间化学键合强度的增加。一旦缓解了这种降解机制,就可以将CGM技术应用于使用聚合物铁电体的高效能量收集设备。

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