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合成蜂窝状介孔硫铁矿 FeS2 微球作为量子点敏化太阳能电池中的高效对电极。

Synthesis of honeycomb-like mesoporous pyrite FeS2 microspheres as efficient counter electrode in quantum dots sensitized solar cells.

机构信息

School of Electronic Science and Applied Physics, Hefei University of Technology, Hefei, 230009, P. R. China; Center of Super-Diamond and Advanced Films (COSDAF), Department of Physics and Materials Science, City University of Hong Kong, Hong Kong SAR, P. R. China.

出版信息

Small. 2014 Nov;10(22):4754-9. doi: 10.1002/smll.201401102. Epub 2014 Jul 1.

Abstract

Honeycomb-like mesoporous pyrite FeS2 microspheres, with diameters of 500-800 nm and pore sizes of 25-30 nm, are synthesized by a simple solvothermal approach. The mesoporous FeS2 microspheres are demonstrated to be an outstanding counter electrode (CE) material in quantum dot sensitized solar cells (QDSSCs) for electrocatalyzing polysulfide electrolyte regeneration. The cell using mesoporous FeS2 microspheres as CE shows 86.6% enhancement in power conversion efficiency (PCE) than the cell using traditional noble Pt CE. Furthermore, it also shows 11.4% enhancement in PCE than the cell using solid FeS2 microspheres as CE, due to the mesoporous structure facilitating better contact with polysulfide electrolyte and fast diffusion of redox couple species in electrolyte.

摘要

通过简单的溶剂热法合成了具有 500-800nm 直径和 25-30nm 孔径的蜂窝状介孔黄铁矿 FeS2 微球。介孔 FeS2 微球在量子点敏化太阳能电池(QDSSCs)中被证明是一种出色的对电极(CE)材料,可用于电催化多硫化物电解质的再生。使用介孔 FeS2 微球作为 CE 的电池的功率转换效率(PCE)比使用传统贵金属 Pt CE 的电池提高了 86.6%。此外,与使用固态 FeS2 微球作为 CE 的电池相比,其 PCE 也提高了 11.4%,这是由于介孔结构有利于与多硫化物电解质更好地接触以及电解质中氧化还原对物质的快速扩散。

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