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Carbon microelectromechanical systems (C-MEMS) based microsupercapacitors

机译:基于碳微机电系统(C-MEMS)的微型超级电容器

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摘要

The rapid development in miniaturized electronic devices has led to an ever increasing demand for high-performance rechargeable micropower scources. Microsupercapacitors in particular have gained much attention in recent years owing to their ability to provide high pulse power while maintaining long cycle lives. Carbon microelectromechanical systems (C-MEMS) is a powerful approach to fabricate high aspect ratio carbon microelectrode arrays, which has been proved to hold great promise as a platform for energy storage. C-MEMS is a versatile technique to create carbon structures by pyrolyzing a patterned photoresist. Furthermore, different active materials can be loaded onto these microelectrode platforms for further enhancement of the electrochemical performance of the C-MEMS platform. In this article, different techniques and methods in order to enhance C-MEMS based various electrochemical capacitor systems have been discussed, including electrochemical activation of C-MEMS structures for miniaturized supercapacitor applications, integration of carbon nanostructures like carbon nanotubes onto C-MEMS structures and also integration of pseudocapacitive materials such as polypyrrole onto C-MEMS structures. © (2015) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:小型电子设备的迅速发展导致对高性能可充电微功率源的需求不断增长。尤其是近年来,由于微型超级电容器能够提供高脉冲功率并保持较长的循环寿命,因此备受关注。碳微机电系统(C-MEMS)是一种制造高纵横比的碳微电极阵列的有力方法,事实证明,碳微机电系统作为储能平台具有广阔的前景。 C-MEMS是一种通过热解图案化光刻胶来创建碳结构的通用技术。此外,可以将不同的活性材料加载到这些微电极平台上,以进一步增强C-MEMS平台的电化学性能。在本文中,已经讨论了用于增强基于C-MEMS的各种电化学电容器系统的不同技术和方法,包括用于小型化超级电容器应用的C-MEMS结构的电化学活化,将碳纳米结构(如碳纳米管)集成到C-MEMS结构上以及还将伪电容材料(例如聚吡咯)集成到C-MEMS结构上。 ©(2015)版权所有,光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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