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首页> 外文期刊>ACS applied materials & interfaces >Conjugated or Broken: The Introduction of Isolation Spacer ahead of the Anchoring Moiety and the Improved Device Performance
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Conjugated or Broken: The Introduction of Isolation Spacer ahead of the Anchoring Moiety and the Improved Device Performance

机译:共轭或折断:在锚定部分之前引入隔离垫片并改善了设备性能

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摘要

Acceptors in traditional dyes are generally designed closed to TiO2 substrate to form a strong electronic coupling with each other (e.g., cyanoacrylic acid) to enhance the electron injection for the high performance of the corresponding solar cells. However, some newly developed dyes with chromophores or main acceptors isolated from anchoring groups also exhibit comparable or even higher performances. To investigate the relatively untouched electronic coupling effect in dye-sensitized solar cells, a relatively precise method is proposed in which the strength is adjusted gradually by changing isolation spacers between main acceptors and anchoring groups to partially control the electronic interaction. After an analysis of 3 different groups of 11 sensitizers, it is inferred that the electronic coupling should be kept at a suitable level to balance the electron injection and recombination. Based on a reference dye LI-81 possessing a cyanoacrylic acid as acceptor and anchoring group, both photocurrent and photovoltage synergistically improved after the properties of isolation spacers were changed through the adjustment of the length, steric hindrance, and push pull electronic characteristic. Accordingly, the rationally designed dye LI-87 with an isolation spacer of thiophene ethylene gives an efficiency of 8.54% and further improved to 9.07% in the presence of CDCA, showing a new way to develop efficient sensitizers.
机译:通常将传统染料中的受体设计为靠近TiO2基材,以形成彼此之间的强电子偶联(例如氰基丙烯酸),从而增强电子注入,以实现相应太阳能电池的高性能。然而,一些新的从发色基团分离出的带有生色团或主要受体的染料也表现出相当甚至更高的性能。为了研究染料敏化太阳能电池中相对未受影响的电子耦合效应,提出了一种相对精确的方法,其中通过改变主受体和锚定基团之间的隔离间隔物来逐步调节强度,以部分控制电子相互作用。在对3种不同的11种敏化剂组进行分析之后,可以推断出电子耦合应保持在适当的水平,以平衡电子注入和复合。基于具有氰基丙烯酸作为受体和锚定基团的参考染料LI-81,在通过调整长度,空间位阻和推挽电子特性来改变隔离间隔物的性能后,光电流和光电压会协同改善。因此,在CDCA存在下,合理设计的带有噻吩乙烯隔离间隔基的染料LI-87的效率为8.54%,并进一步提高至9.07%,这是开发高效敏化剂的新途径。

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