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Bias-free, solar-charged electric double-layer capacitors

机译:没有偏见,太阳能充电电动双层从内部为塔楼照明电容器

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摘要

The conversion of solar energy with simultaneous electric energy storage provides a promising means for optimizing energy utilization efficiency and reducing device volume. In this paper, a 3-dimensional meso-porous carbon coated branched TiO2 nanowire composite is rationally designed for direct conversion and storage of solar energy as electric double-layer capacitive energy. The 1-dimensional, crystalline TiO2 trunks serve as long light absorption and continuous charge transport pathways, and the high-density TiO2 branches can efficiently increase the contact area with the surface coated mesoporous carbon layers. In addition, the ordered and uniformed mesopores provide large pore sizes for electrolyte penetration, and a high surface area for charge absorption and storage. Under a 1-sun illumination and no external electric bias, this branched TiO2/mesoporous carbon composite exhibits specific capacitances of over 30 and 23.4 F g~(-1), at current densities of 0.1 and 0.5 A g~(-1), respectively. An excellent stability of >50 photocharging-electrical discharging cycles has also been demonstrated, suggesting the potential of further developing this hybrid material structure for simultaneous solar conversion and electric energy storage.
机译:太阳能的转换和同步电能存储提供了一种很有前途的优化能源利用方式效率和减少设备体积。纸,一个三维meso-porous碳涂层支二氧化钛纳米线复合是合理的为直接转换和存储而设计的太阳能电双层电容能量。树干充当长光吸收连续的电荷传输路径,高密度二氧化钛树枝可以有效地增加表面涂层的接触面积介孔碳层。命令和穿制服的中孔提供大对电解液渗透孔隙大小,高表面积吸收和收费存储。外部电气的偏见,这支二氧化钛/介孔碳复合展品具体的参数超过30和23.4 Fg ~(1),电流密度的0.1和0.5分别g ~(1)。> 50 photocharging-electrical放电周期也得到了证实,表明这种混合进一步发展的潜力同时太阳能材料结构转换和电能存储。

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