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Facile and Scalable Preparation of Ruthenium Oxide-Based Flexible Micro-Supercapacitors

机译:方便,可扩展地制备基于氧化钌的柔性微型超级电容器

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Tremendous efforts have been invested in the development of the internet of things during the past 10 years. Implantable sensors still need embedded miniaturized energy harvesting devices, since commercialized thin films and microbatteries do not provide sufficient power densities and suffer from limited lifetime. Therefore, micro-supercapacitors are good candidates to store energy and deliver power pulses while providing non-constant voltage output with time. However, multistep expensive protocols involving mask aligners and sophisticated cleanrooms are used to prepare these devices. Here, a simple and versatile laser-writing procedure to integrate flexible micro-supercapacitors and microbatteries on current-collector-free polyimide foils is reported, starting from commercial powders. Ruthenium oxide (RuO2)-based micro-supercapacitors are prepared by laser irradiation of a bilayered tetrachloroauric acid (HAuCl4 center dot 3H(2)O)-cellulose acetate/RuO2 film deposited by spin-coating, which leads to adherent Au/RuO2 electrodes with a unique pillar morphology. The as-prepared microdevices deliver 27 mF cm(-2)/540 F cm(-3) in 1 m H2SO4 and retain 80% of the initial capacitance after 10 000 cycles. This simple process is applied to make carbon-based micro-supercapacitors, as well as metal oxide based pseudocapacitors and battery electrodes, thus offering a straightforward solution to prepare low-cost flexible microdevices at a large scale.
机译:在过去的十年中,在物联网的开发方面投入了大量的精力。由于商业化的薄膜和微电池无法提供足够的功率密度并且使用寿命有限,因此植入式传感器仍需要嵌入式微型化能量收集设备。因此,微型超级电容器是存储能量和传递功率脉冲,同时提供随时间变化的非恒定电压输出的理想选择。然而,涉及掩模对准器和先进的洁净室的多步昂贵协议被用于制备这些设备。在此,从商业粉末开始,报道了一种简单且通用的激光写入程序,该程序将柔性微型超级电容器和微型电池集成在无集电器的聚酰亚胺箔上。基于氧化钌(RuO2)的微型超级电容器是通过激光辐照双层四氯金酸(HAuCl4中心点3H(2)O)-通过旋涂沉积的醋酸纤维素/ RuO2膜制备的,从而形成粘附的Au / RuO2电极具有独特的支柱形态。所准备的微型设备可在1 m H2SO4中提供27 mF cm(-2)/ 540 F cm(-3)的电流,并在1万次循环后保留80%的初始电容。这种简单的工艺可用于制造碳基微型超级电容器,金属氧化物基伪电容器和电池电极,从而提供了直接解决方案,可大规模地生产低成本的柔性微型器件。

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