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Tunable TiO2-pepsin thin film as a low-temperature electron transport layer for photoelectrochemical cells

机译:可调谐TiO2-薄膜薄膜作为光电化学电池的低温电子传输层

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摘要

Electron transport layer (ETL) in perovskite-based solar cells (PSCs) is attractive from the perspective of photon-to-electron conversion efficiency. TiO2 thin film is preferred in situations where microstructure, stability and charge transport characteristics are important. In this regard, we illustrate an approach that involves the synthesis of TiO2-pepsin thin film that can be used either as a mesoporous or compact layer depending on the device architecture of PSC devices. It was observed that pepsin acts as organic glue to TiO2 nanoparticles and facilitates in controlling morphology of the thin film. The addition of pepsin did not have any adverse effect on TiO2 anatase phase. Thickness and roughness of mesoporous and compact TiO2 thin film suggested that controlled agglomeration can be achieved by tuning the concentration of pepsin in the precursor colloidal solution. The spin-coated thin films indicated high bulk mobility (205 cm(2) V-1 s-(1)) and good thermal stability over a wide range temperature (25-700 degrees C). Furthermore, in the presence of pepsin group in TiO2 thin film, the inherent optical properties were retained, as confirmed by UV-vis analysis.
机译:基于Perovskite的太阳能电池(PSC)中的电子传输层(ETL)是从光子 - 电子转换效率的角度吸引。在微观结构,稳定性和电荷传输特性重要的情况下,TiO2薄膜是优选的。在这方面,我们说明了一种方法,其涉及合成TiO2-百蛋白蛋白薄膜,其可以根据PSC器件的装置架构使用作为中孔或紧凑层。观察到胃蛋白酶用作TiO 2纳米颗粒的有机胶,并有助于控制薄膜的形态。胃蛋白酶的添加对TiO 2锐钛矿相没有任何不利影响。介孔和紧凑的TiO2薄膜的厚度和粗糙度表明,通过调节前体胶体溶液中的胃蛋白酶的浓度,可以实现受控聚集。旋涂的薄膜指示高体迁移率(205cm(2)V-1 S-(1)),宽范围温度(25-700℃)上的良好热稳定性。此外,在TiO 2薄膜中存在胃蛋白酶基团中,保留了固有的光学性质,通过UV-VIS分析证实。

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