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The Charging Events in Contact-Separation Electrification

机译:接触分离电气化的充电事件

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Contact electrification (CE)—charging of surfaces that are contacted and separated, is a common phenomenon, however it is not completely understood yet. Recent studies using surface imaging techniques and chemical analysis revealed a ‘spatial’ bipolar distribution of charges at the nano dimension, which made a paradigm shift in the field. However, such analyses can only provide information about the charges that remained on the surface after the separation, providing limited information about the actual course of the CE event. Tapping common polymers and metal surfaces to each other and detecting the electrical potential produced on these surfaces ‘in-situ’ in individual events of contact and separation, we show that, charges are generated and transferred between the surfaces in both events; the measured potential is bipolar in contact and unipolar in separation. We show, the ‘contact-charges’ on the surfaces are indeed the net charges that results after the separation process, and a large contribution to tribocharge harvesting comes, in fact, from the electrostatic induction resulting from the generated CE charges. Our results refine the mechanism of CE providing information for rethinking the conventional ranking of materials’ charging abilities, charge harvesting, and charge prevention.
机译:接触电气化(CE)接触和分离的表面的充气,是一种常见的现象,但是尚未完全理解。最近使用表面成像技术和化学分析的研究揭示了纳米尺寸的电荷的“空间”双极分布,这使得该领域的范式转移。然而,这种分析只能提供有关分离后留在表面上的收费的信息,提供有关CE事件实际过程的有限信息。彼此敲击共同的聚合物和金属表面,并检测在接触和分离的各个事件中对这些表面上的电位产生的电位,我们表明,在两个事件中的表面之间产生并转移电荷;测量的电位是分离的接触和单极的双极。我们展示了,表面上的“接触充电”确实是在分离过程之后产生的净电荷,实际上从所产生的CE电荷所产生的静电感应来实现对摩擦收获的大贡献。我们的结果完善了CE提供了重新思考材料充电能力,电荷收获和预防措施的传统排名的信息。

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