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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Carbon Nanotube-Conducting Polymer Core-Shell Hybrid Using an Imidazolium-Salt-Based Ionic Liquid As a Linker:Designed As a Potential Platinum Electrode Alternative Material for Large-Scale Solution Processing
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Carbon Nanotube-Conducting Polymer Core-Shell Hybrid Using an Imidazolium-Salt-Based Ionic Liquid As a Linker:Designed As a Potential Platinum Electrode Alternative Material for Large-Scale Solution Processing

机译:使用咪唑盐基离子液体作为连接基的碳纳米管导电聚合物核-壳杂化体:被设计为大规模溶液处理的潜在铂电极替代材料

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摘要

A core-shell carbon nanotube/conducting polymer hybrid, using an imidazolium-salt-based ionic liquid as a linker, has been developed for large-scale solution processing of CNTs. Dye-sensitized solar cells (DSCs) with the solution processed hybrid film as the counter electrode exhibit comparable photovoltaic performance to that of devices with the conventional Pt counter electrode. A strategy developed is extremely simple and effective with good environmentally compliance. The water-soluble shell (1) promotes dispersion of the CNT aggregates and brings individual CNTs into aqueous solution while maintaining intact π-conjugation structure and (2) leads to a reduced charge injection barrier and realizes high photovoltaic performance. This work paves a way for high-performance optoelectronic and solar energy conversion devices of large-scale applications.
机译:已经开发了使用咪唑盐基离子液体作为连接剂的核-壳碳纳米管/导电聚合物杂化物,用于大规模的CNT溶液加工。以溶液处理的杂化膜作为对电极的染料敏化太阳能电池(DSC)与具有常规Pt对电极的器件相比具有可比的光伏性能。制定的策略极其简单有效,并具有良好的环境合规性。水溶性壳(1)在保持完整的π-共轭结构的同时促进CNT聚集体的分散并且将各个CNT带入水溶液中,并且(2)导致电荷注入势垒减小并且实现高光伏性能。这项工作为大规模应用的高性能光电和太阳能转换设备铺平了道路。

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