首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Effects of 160 MeV Ni12+ ion irradiation on polypyrrole conducting polymer electrode materials for all polymer redox supercapacitor
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Effects of 160 MeV Ni12+ ion irradiation on polypyrrole conducting polymer electrode materials for all polymer redox supercapacitor

机译:160 MeV Ni12 +离子辐照对所有聚合物氧化还原超级电容器用聚吡咯导电聚合物电极材料的影响

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摘要

Electronically conducting polymers are suitable electrode materials for high performance supercapacitors, for their high specific capacitance and high do conductivity in the charged state. Supercapacitors and batteries are energy storage and conversion systems which satisfies the requirements of high specific power and energy in a complementary way. Ion beam {energy > 1 MeV} irradiation on the polymer is a novel technique to enhance or alter the properties like conductivity, density, chain length and solubility. Conducting polymer polypyrrole thin films doped with LiClO4 are synthesized electrochemically on ITO coated glass substrate and are irradiated with 160 MeV Ni12+ ions at different fluence 5 x 10(10), 5 x 10(11) and 3 x 10(12) ions cm(-2). Dc conductivity measurement of the irradiated films showed 50-60% increase in conductivity which is may be due to increase of carrier concentration in the polymer film as observed in ITV-Vis spectroscopy and other effects like cross-linking of polymer chain, bond breaking and creation of defects sites. X-ray diffractogram study shows that the degree of crystallinity of polypyrrole increases in SHI irradiation and is proportionate to ion fluence. The capacitance of the irradiated films is lowered but the capacitance of the supercapacitors with irradiated films showed enhanced stability compared to the devices with unirradiated films while characterized for cycle life up to 10,000 cycles.
机译:电子导电聚合物是高性能超级电容器的合适电极材料,因为它们在充电状态下具有高的比电容和高的导电率。超级电容器和电池是能量存储和转换系统,以互补的方式满足高比功率和能量的要求。聚合物上的离子束{能量> 1 MeV}辐照是一种增强或改变诸如电导率,密度,链长和溶解度之类的新技术。掺杂有LiClO4的导电聚合物聚吡咯薄膜在ITO涂覆的玻璃基板上进行电化学合成,并以不同的通量分别以160 MeV Ni12 +离子辐照5 x 10(10),5 x 10(11)和3 x 10(12)离子cm( -2)。辐照膜的Dc电导率测量显示电导率增加50-60%,这可能是由于ITV-Vis光谱学中观察到的聚合物膜中载流子浓度的增加以及其他影响,例如聚合物链的交联,键断裂和创建缺陷站点。 X射线衍射图研究表明,聚吡咯的结晶度在SHI照射下增加,并且与离子通量成正比。辐照膜的电容降低了,但是与辐照膜的器件相比,辐照膜的超级电容器的电容显示出更高的稳定性,并且循环寿命高达10,000次。

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