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Highly transparent counter electrodes for dye-sensitized solar cells made with advanced nanocomposite materials

机译:用先进的纳米复合材料制成的用于染料敏化太阳能电池的高透明对电极

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Dye sensitized solar cells (DSSCs) constitute a good alternative for harnessing the solar energy since they are based on earth abundant nanocomposite materials, their manufacture requires simple chemical processes, which are more or less benign, and have low fabrication cost. DSSCs' efficiency has just reached 13% and there is even more room for improvement. Researchers are trying to improve each component and find the best combination of them which will lead to enhanced electrical characteristics and long term stability in order to proceed to their commercialization. Due to the nanostructured character of the materials used in DSSCs, they can be either opaque or even transparent. Transparent dye-sensitized solar cells can be integrated as photovoltaic windows replacing structural building elements. In particular, to this end, a large volume of the recent works on DSSC's is devoted to the study of structural properties of materials that can be used as negative electrodes and also be transparent. At the present work transparent nickel doped cobalt sulfide was fabricated on a SnO2:F electrode through chemical bath deposition and tested as an efficient electrocatalyst and as an alternative to the expensive platinum counter electrode. The advantage of the deposition method is that it doesn't require annealing at high temperature. The substitution of platinum with a nickel doped cobalt sulfide counter electrode in a DSSC affects the charge transfer resistance corresponding to the counter electrode/ electrolyte interface affecting its electrical parameters. In order to investigate how much this electrode could affect the electrical characteristics of a dye-sensitized solar cell, we manufactured cells with the same TiO2 photoanode sensitized with dye (N719) and employing the same quasi-solid electrolyte bearing a redox couple, altering only the counter electrode used. All cells were characterized through photocurrent-voltage measurements and electrochemical impedance s- ectroscopy (EIS).
机译:染料敏化太阳能电池(DSSC)是利用太阳能的良好替代方法,因为它们基于富含地球的纳米复合材料,它们的制造需要简单的化学过程,而该过程或多或少是良性的,并且制造成本低。 DSSC的效率刚刚达到13%,还有更大的改进空间。研究人员正在尝试改进每个组件并找到它们的最佳组合,这将导致增强的电气特性和长期稳定性,从而使其商业化。由于用于DSSC的材料的纳米结构特征,它们可以是不透明的,甚至是透明的。可以将透明的染料敏化太阳能电池集成为光伏窗户,以代替结构建筑元件。特别地,为此目的,关于DSSC的最新研究的大量致力于用于可用作负电极并且也是透明的材料的结构特性的研究。在目前的工作中,通过化学浴沉积在SnO2:F电极上制备了透明的掺杂镍的硫化钴,并已作为有效的电催化剂和昂贵的铂对电极的替代品进行了测试。沉积方法的优点是不需要高温退火。在DSSC中用镍掺杂的硫化钴反电极对铂的取代会影响与反电极/电解质界面相对应的电荷转移电阻,从而影响其电参数。为了研究该电极能在多大程度上影响染料敏化太阳能电池的电特性,我们制造了具有相同的被染料敏化的TiO2光阳极(N719)并使用带有氧化还原对的准固体电解质的电池,使用的对电极。通过光电流-电压测量和电化学阻抗显微镜(EIS)对所有电池进行了表征。

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