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The search for efficient electrocatalysts as counter electrode materials for dye-sensitized solar cells: mechanistic study, material screening and experimental validation

机译:寻找有效的电催化剂作为染料敏化太阳能电池的对电极材料:机理研究,材料筛选和实验验证

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摘要

In recent years, there has been a significant increase in the studies on effective energy-conversion devices, including photovoltaics and fuel cells, which aim to alleviate the enormous energy demand, as well as the environmental pollution issues associated with current power consumption. Among these devices, dye-sensitized solar cells (DSCs) have received significant attention owing to their simple fabrication procedure, cost-effectiveness and high-power-conversion efficiency. The counter electrode (CE) of the DSCs is an important component and generally uses platinum as its benchmark material, the high cost and scarcity of which have limited the broad application of the DSCs. Thus, substantial effort has been devoted to seek active CE materials with low cost, high electrocatalytic activity and excellent stability. Nevertheless, this is generally achieved via a ‘trial-and-error’ method owing to the lack of information on the mechanism of the electrocatalytic reaction on the CE’s surface. This report summarizes the recent advances in the mechanistic study of the interfacial electrocatalytic reaction on CE materials, as well as the establishment of a rational screening protocol for efficient CE materials. Furthermore, several outstanding CE materials developed via this protocol have been reviewed. The demonstrated combined approach can be extended to the studies of other essential electrocatalytic reactions.
机译:近年来,对有效的能量转换装置(包括光伏电池和燃料电池)的研究已大大增加,其目的是减轻巨大的能源需求以及与当前功耗相关的环境污染问题。在这些设备中,染料敏化太阳能电池(DSC)由于其简单的制造过程,成本效益和高功率转换效率而受到了广泛关注。 DSC的对电极(CE)是重要的组成部分,通常使用铂作为其基准材料,其高成本和稀缺性限制了DSC的广泛应用。因此,已经致力于寻找低成本,高电催化活性和优异稳定性的活性CE材料。尽管如此,由于缺乏有关CE表面电催化反应机理的信息,通常通过“试错法”来实现。本报告总结了在CE材料上进行界面电催化反应的机理研究的最新进展,以及为有效的CE材料建立合理的筛选方案。此外,已经审查了通过该协议开发的几种出色的CE材料。证明的组合方法可以扩展到其他基本电催化反应的研究。

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