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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Electrochemistry in reverse biased dye solar cells and dye/electrolyte degradation mechanisms
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Electrochemistry in reverse biased dye solar cells and dye/electrolyte degradation mechanisms

机译:反向偏置染料太阳能电池中的电化学和染料/电解质的降解机理

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Mismatched or shadowed individual cells in a module can operate in the reverse bias (RB) regime. We investigate and identify key mechanisms for RB operation and degradation in dye solar cells (DSCs). Current-voltage characteristics in RB are sensitive to the type of dye utilised and to TiCl _4 substrate treatment. Subjecting the cell to a RB of 0.4 V over 740 h has little effect on conversion efficiency whereas a significant lowering is observed for the harsher stress tests at 0.6 V and by forcing a constant current equal to its I _(SC). For more prolonged reverse biases at I _(SC) (>740 h), we show that depletion of [I _3 ~-] inside the DSC can lead the reverse bias potentials across the cells to considerably increase in time. Electrochemical impedance measurements show that the overpotentials at the counter electrodes (CEs) can eventually reach values high enough to cause hydrogen evolution. Clear evidence of gas bubbles forming inside a complete dye solar cell under reverse bias stress, leading to severe device degradation, is presented. We also show that reactions of iodine with water present in the electrolyte can play an important role in [I 3 -] depletion and in the formation of hydrogen at the Pt CE.
机译:模块中不匹配或有阴影的单个单元可以在反向偏置(RB)方案下运行。我们研究和确定染料太阳能电池(DSCs)中的RB操作和降解的关键机制。 RB中的电流-电压特性对所用染料的类型和TiCl_4衬底处理很敏感。在740小时内使电池承受0.4 V的RB对转换效率的影响很小,而在0.6 V的更苛刻的压力测试中,通过施加等于其I _(SC)的恒定电流,观察到显着降低。对于I_(SC)(> 740 h)处更长时间的反向偏置,我们表明DSC内部[I _3〜-]的耗尽会导致整个单元的反向偏置电势在时间上显着增加。电化学阻抗测量结果显示,对电极(CE)上的过电势最终可以达到足够高的值,从而引起氢放出。清楚的证据表明,在反向偏压下,整个染料太阳能电池内部会形成气泡,从而导致器件严重降解。我们还表明,碘与电解质中存在的水的反应可以在[I 3-]耗尽和Pt CE处的氢形成中发挥重要作用。

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