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具有水凝胶嵌入微脉管网络的可再生光伏器件。

Regenerable photovoltaic devices with a hydrogel-embedded microvascular network.

机构信息

Department of Chemical & Biomolecular Engineering, North Carolina State University, Raleigh, NC 27695-7905, USA.

出版信息

Sci Rep. 2013;3:2357. doi: 10.1038/srep02357.

Abstract

Light-driven degradation of photoactive molecules could be one of the major obstacles to stable long term operation of organic dye-based solar light harvesting devices. One solution to this problem may be mimicking the regeneration functionality of a plant leaf. We report an organic dye photovoltaic system that has been endowed with such microfluidic regeneration functionality. A hydrogel medium with embedded channels allows rapid and uniform supply of photoactive reagents by a convection-diffusion mechanism. A washing-activation cycle enables reliable replacement of the organic component in a dye-sensitized photovoltaic system. Repetitive restoration of photovoltaic performance after intensive device degradation is demonstrated.

摘要

光驱动的光活性分子降解可能是有机染料基太阳能光收集器件稳定长期运行的主要障碍之一。解决这个问题的一种方法可能是模拟植物叶片的再生功能。我们报告了一种具有这种微流体制动再生功能的有机染料光伏系统。一种具有嵌入式通道的水凝胶介质允许通过对流扩散机制快速和均匀地供应光活性试剂。一个洗涤-激活循环能够可靠地取代染料敏化光伏系统中的有机组件。在器件严重降解后,经过反复修复,光伏性能得到了恢复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a5a/3733051/fb55f313c5c2/srep02357-f1.jpg

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