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基于低聚物凝胶电解质的高度耐用且高效的量子点敏化太阳能电池。

Highly durable and efficient quantum dot-sensitized solar cells based on oligomer gel electrolytes.

作者信息

Kim Heejin, Hwang Insung, Yong Kijung

机构信息

Surface Chemistry Laboratory of Electronic Materials (SCHEMA), Department of Chemical Engineering, Pohang University of Science and Technology (POSTECH) , Pohang 790-784, Korea.

出版信息

ACS Appl Mater Interfaces. 2014 Jul 23;6(14):11245-53. doi: 10.1021/am501407m. Epub 2014 Jul 9.

Abstract

For stable quantum dot-sensitized solar cells, an oligomer-contained gel electrolyte was employed with a carbon-based counter electrode and a hierarchically shelled ZnO photoelectrode. Poly(ethylene glycol) dimethyl-ether (PEGDME) was added to the polysulfide electrolyte to enhance the stability of the methanol-based electrolyte. In addition, the nanocomposite gel electrolyte with fumed silica was used, which provided a solid three-dimensional network. A quantum-dot-modified ZnO nanowire photoanode enhanced the visible light harvesting, and a Pt/CNT-RGO counter electrode increased the catalytic activity. The oligomer gel electrolyte prevented the liquid electrolyte from leaking, and the carbon-based counter electrode retarded chemical poisoning at the counter electrode. The optimized cell exhibited 5.45% photoelectric conversion efficiency with long-term stability demonstrated over 5000 s operation time.

摘要

对于稳定的量子点敏化太阳能电池,采用了含低聚物的凝胶电解质、碳基对电极和具有分层壳层的ZnO光电极。将聚乙二醇二甲醚(PEGDME)添加到多硫化物电解质中以提高甲醇基电解质的稳定性。此外,还使用了含有气相二氧化硅的纳米复合凝胶电解质,其提供了一个固体三维网络。量子点修饰的ZnO纳米线光阳极增强了可见光的捕获,而Pt/CNT-RGO对电极提高了催化活性。低聚物凝胶电解质防止了液体电解质泄漏,碳基对电极抑制了对电极处的化学中毒。优化后的电池表现出5.45%的光电转换效率,并在超过5000秒的运行时间内展现出长期稳定性。

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