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Rational molecular engineering of cyclopentadithiophene-bridged D-A-π-A sensitizers combining high photovoltaic efficiency with rapid dye adsorption

机译:结合高光伏效率和快速染料吸附的环戊二噻吩桥联D-A-π-A敏化剂的合理分子工程

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摘要

Dye-sensitized solar cell (DSSC) is considered as a feasible route to the clean and renewable energy conversion technique. The commercial application requires further enhancements on photovoltaic efficiency and simplification on the device fabrication. For avoiding the unpreferable trade-off between photocurrent (JSC) and photovoltage (VOC), here we report the molecular engineering and comprehensive photovoltaic characterization of three cyclopentadithiophene-bridged D-A-π-A motif sensitizers with a change in donor group. We make a careful choice on the donor and conjugation bridge for synergistically increasing JSC and VOC. Comparing with the reference dye >WS-2, the photovoltaic efficiency with the single component dye of >WS-51 increases by 18%, among one of the rare examples in pure metal-free organic dyes exceeding 10% in combination with traditional iodine redox couples. Moreover, >WS-51 exhibits several prominent merits on potentially scale-up industrial application: i) facile synthetic route to target molecule, ii) simple dipping procedure without requirement of co-sensitization, and iii) rapid dye adsorption capability.
机译:染料敏化太阳能电池(DSSC)被认为是实现清洁和可再生能源转换技术的可行途径。商业应用要求进一步提高光伏效率并简化装置制造。为避免光电流(JSC)和光电压(VOC)之间的不利折衷,我们在此报告了三种供体基团改变的环戊二噻吩桥连的D-A-π-A图案敏化剂的分子工程和全面光伏表征。我们在供体和共轭桥上做出谨慎选择,以协同增加JSC和VOC。与参考染料> WS-2 相比,> WS-51 的单组分染料的光伏效率提高了18%,这是纯金属中罕见的例子之一,超过10%的游离有机染料与传统的碘氧化还原对组合。此外,> WS-51 在潜在的大规模工业应用中显示出几个突出的优点:i)易于合成的目标分子途径,ii)无需共敏化的简单浸渍程序,以及iii)快速染料吸附能力。

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