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首页> 外文期刊>ECS Journal of Solid State Science and Technology >Effect of Current Collector and Pyrolysis Temperature on the Electrochemical Performance of Photoresist Derived Carbon Films
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Effect of Current Collector and Pyrolysis Temperature on the Electrochemical Performance of Photoresist Derived Carbon Films

机译:集电器和热解温对光致抗蚀剂衍生碳膜电化学性能的影响

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摘要

SU-8, an epoxy based negative photoresist has been demonstrated as a potential precursor to fabricate thin films and three-dimensional micropatterned arrays in glassy carbon. However, the use of silicon wafer as a substrate cum collector limits their use in real battery devices. In accordance with the commercial lithium ion battery architecture and also owing to enhanced conductivity, we have successfully demonstrated the use of stainless steel (SS) wafer as a current collector to prepare binder free SU-8 derived carbon thin films. Standard carbon microelectromechanical systems (C-MEMS) process parameters were tuned to obtain a uniform, crack-free carbon thin film on SS wafer upon pyrolysis. Further, we varied the final pyrolysis temperature to examine its effect on the microstructure and composition as characterized with X-ray diffraction, Small angle X-ray scattering, Raman spectroscopy and CHNS-O elemental analyzer respectively. The microstructural changes in the carbon films at different pyrolysis temperature were then correlated with their electrochemical performance as investigated using galvanostat charge/discharge experiments, impedance spectroscopy and cyclic voltammetry. Selection of an appropriate current collector and optimizing the pyrolysis temperature yielded excellent cyclic stability and coulombic efficiency with 400 mAh g(-1) reversible capacity after 100 cycles, nearly double to as reported in the literature. (C) The Author(s) 2016. Published by ECS.
机译:SU-8,已经证明了一种环氧基的负光致抗蚀剂作为制造薄膜和三维微图案阵列的潜在前体。然而,使用硅晶片作为基板CUL收集器限制了它们在真实电池装置中的用途。根据商用锂离子电池架构,也是由于电导率增强,我们已成功证明了使用不锈钢(SS)晶片作为集电器以制备粘合剂游离SU-8衍生的碳薄膜。调谐标准碳微机电系统(C-MEMS)工艺参数以在热解时获得SS晶片上的均匀,无裂缝的碳薄膜。此外,我们改变了最终热解温度,以检查其对具有X射线衍射,小角度X射线散射,拉曼光谱和CHNS-O元素分析仪的微观结构和组合物的作用。然后使用Galvanostat电荷/放电实验,阻抗光谱和循环伏安法研究不同热解温度在不同热解温度下的碳膜的微观结构变化与其电化学性能相关。选择适当的集电器和优化热解温度,产生优异的循环稳定性,并且在100次循环后具有400mAhg(-1)可逆容量的循环稳定性和库仑效率,几乎双倍于文献中报道。 (c)2016年提交人。由ECS发布。

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