首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Transport and Interfacial Transfer of Electrons in Dye-Sensitized Solar Cells Utilizing a Co(dbbip)2 Redox Shuttle
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Transport and Interfacial Transfer of Electrons in Dye-Sensitized Solar Cells Utilizing a Co(dbbip)2 Redox Shuttle

机译:利用Co(dbbip)2氧化还原梭在染料敏化太阳能电池中电子的传输和界面转移

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The transport and interfacial transfer of electrons in dye-sensitized solar cells utilizing the Co(dbbip)2 (dbbip = 2,6-bis(1'-butylbenzimidazol-2'-yl)pyridine) redox couple as an alternative to the conventional I_3~-/I~- couple have been investigated using intensity modulated photocurrent and photovoltage spectroscopy (IMPS/IMVS) combined with in situ near IR absorption spectroscopy. Attempts to use impedance spectroscopy to determine the electron diffusion length were unsuccessful due to overlap of the cathode and electron transport impedances. Values of the electron diffusion length in the range 5—8 μm were derived by IMPS/IMVS as well as by analysis of the ratio of the normalized photocurrent action spectra measured for illumination through the counter electrode and through the TiO2 electrode. These values indicate that loss of electrons by electron transfer to the Co(III) species will be important for TiO2 films thicker than about 5 μm, unless steps are taken to passivate the surface to retard back electron transfer.
机译:染料敏化太阳能电池中电子的传输和界面转移利用Co(dbbip)2(dbbip = 2,6-双(1'-丁基苯并咪唑-2'-基)吡啶)氧化还原对替代常规I_3已经使用强度调制光电流和光电压光谱法(IMPS / IMVS)结合原位近红外吸收光谱法研究了I- / I--偶。由于阴极和电子传输阻抗的重叠,使用阻抗光谱法确定电子扩散长度的尝试未成功。通过IMPS / IMVS以及通过分析通过对电极和TiO2电极照射而测量的归一化光电流作用谱的比率,得出5-8μm范围内的电子扩散长度值。这些值表明,通过电子转移到Co(III)物种而损失的电子对于厚度大于约5μm的TiO2薄膜将是重要的,除非采取步骤钝化表面以阻止反向电子转移。

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