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Reversible Photochemical Tuning of Net Charge Separation from Contact Electrification

机译:接触带电净电荷分离的可逆光化学调节

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This paper describes the photochemical tuning of net charge that develops from contact electrification. The net charge separation and/or rate of charging of photochromic spiropyran (SP)-containing polymer films can be controlled by irradiation with UV light. The isomerization of the SP form to the more hydrophilic merocyanine (MC) by irradiation with UV light always leads to films that charge more positively than before irradiation. The incorporation of a halogenated comonomer into ring-opening metathesis polymerization (ROMP) yields films that charged negatively before irradiation so that a change in sign of the net charge separation of the film could be observed upon irradiation. An important advantage to our photochromic system is that light can be used to tune the charging behavior of the material, with spatial or temporal control of irradiation, leading to films that resist charging. Furthermore, the observed trends can be reversed by the exposure of the SP-containing polymer films to heat or visible light.
机译:本文介绍了由接触带电产生的净电荷的光化学调节。含光致变色螺吡喃(SP)的聚合物膜的净电荷分离和/或带电率可以通过用紫外线照射来控制。通过紫外线照射将SP形式异构化为更具亲水性的花菁(MC),总会导致膜的电荷比照射前更正。将卤化的共聚单体掺入开环复分解聚合(ROMP)中得到的膜在辐照前带负电,从而在辐照时可以观察到膜的净电荷分离迹象的变化。我们的光致变色系统的一个重要优点是,可以使用光来调节材料的带电行为,同时对照射进行空间或时间控制,从而形成抗充电的薄膜。此外,可以通过将含SP的聚合物膜暴露于热或可见光来逆转观察到的趋势。

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