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Photocatalytic Oxidation of Triiodide in UVA-Exposed Dye-Sensitized Solar Cells

机译:三碘化物在UVA暴露的染料敏化太阳能电池中的光催化氧化

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UVA irradiation of glass mounted dye-sensitized solar cells without UV filtration causes failure within 400 hours of light exposure. The failure mode is shown to relate to consumption ofI3-, which is directly related to TiO2photo-catalysis. The onset of failure is easily determined from electrochemical impedance data where the recombination resistance of the TiO2/electrolyte back reaction drops markedly prior to the onset of degradation. At the point of complete cell failure this impedance value then dramatically increases as there is no longer an interfacial reaction possible between the TiO2and theI3-depleted electrolyte. Device failure is most rapid for cells under electrical load indicating that the degradation of the electrolyte is related to photogenerated hole production by excitation of the TiO2. Once depleted by UV exposure, theI3-can be regenerated by simple application of a reverse bias which can restore severely UV degraded devices to near original working conditions.
机译:未安装紫外线过滤的玻璃染料敏化太阳能电池的UVA照射会在曝光后400小时内导致故障。失效模式显示出与I 3的消耗有关,其与TiO 2光催化直接相关。可以从电化学阻抗数据轻松确定失效的开始时间,在该数据中,在降解开始之前TiO2 /电解质逆反应的复合电阻显着下降。在完全电池失效时,该阻抗值会急剧增加,因为TiO2和贫I3电解质之间不再存在界面反应。对于在电负载下的电池而言,设备故障最迅速,这表明电解质的降解与通过激发TiO2而产生的光生空穴有关。一旦被紫外线暴露耗尽,I3-就可以通过简单地施加反向偏压来再生,该逆偏压可以将严重降解了紫外线的器件恢复到接近原始工作条件。

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