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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Influence of ethynyl position on benzothiadiazole based D-A-pi-A dye-sensitized solar cells: spectral response and photovoltage performance
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Influence of ethynyl position on benzothiadiazole based D-A-pi-A dye-sensitized solar cells: spectral response and photovoltage performance

机译:乙炔基位置对苯并噻二唑基D-A-pi-A染料敏化太阳能电池的影响:光谱响应和光电压性能

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The ethynyl group has been widely employed in dye-sensitized solar cells (DSSCs) as an efficient pi-spacer to prolong conjugation and promote electronic coupling at the interface of TiO2 films. However, systematic studies of the ethynyl position on metal-free organic sensitizers remain relatively rare. Herein we report indoline-based organic dyes bearing an ethynyl group at different positions of D-A-pi-A organic dyes. Based on the reference dye D1, we inserted an ethynyl unit in either the left or right side of benzothiadiazole to construct two novel dyes D2 and D3. It was found that inserting an ethynyl unit to the side of the anchoring group obtained a higher molar extinction coefficient with a red shift in the absorption band. Interestingly, D2 and D3 displayed a better photovoltaic performance with respect to D1. In particular, D3 exhibits an over 90 mV enhanced open-circuit voltage (V-oc) than D2 owing to a longer electron lifetime and slower charge recombination. With this incredible increase of V-oc, D3 bestows a high efficiency of 7.13% with respect to D1. and D2. Coadsorption strategies are exploited for further improving the cell behaviour. As a result, cosensitization with a long-wavelength-responsive dye WS-2 was demonstrated to efficiently compensate the light-harvesting, achieving an excellent efficiency of 9.83% in the iodine electrolyte. This work has paved a useful and practical way for molecular engineering in D-A-pi-A metal-free organic dyes.
机译:乙炔基已被广泛用于染料敏化太阳能电池(DSSC)中,作为有效的pi间隔基,可延长共轭并促进TiO2薄膜界面处的电子耦合。但是,对不含金属的有机敏化剂上乙炔基位置的系统研究仍然相对较少。在本文中,我们报道了在D-A-pi-A有机染料的不同位置带有乙炔基的基于吲哚啉的有机染料。基于参考染料D1,我们在苯并噻二唑的左侧或右侧插入了一个乙炔基单元,以构建两种新型染料D2和D3。发现将乙炔基单元插入锚定基团的一侧获得了更高的摩尔消光系数,并且吸收带发生了红移。有趣的是,D2和D3相对于D1表现出更好的光伏性能。特别地,由于更长的电子寿命和更慢的电荷复合,D3表现出比D2高90 mV的开路电压(V-oc)。通过V-oc的惊人提高,D3的效率比D1高7.13%。和D2。共吸附策略被用于进一步改善细胞行为。结果,证明了与长波长响应染料WS-2的共敏化可以有效地补偿光收集,在碘电解质中达到9.83%的优异效率。这项工作为D-A-pi-A无金属有机染料的分子工程学开发了一种有用且实用的方法。

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