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Enhanced PEC characteristics for CdSe polycrystalline film electrodes prepared by combined electrochemical/Chemical bath depositions

机译:通过电化学/化学浴结合沉积制备的CdSe多晶薄膜电极的增强的PEC特性

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摘要

Polycrystalline CdSe films have been deposited onto fluorine doped tin oxide (FTO/glass) substrates by three different techniques, electrochemical deposition (ECD), chemical bath deposition (CBD) and, for the first time, combined ECD and CBD (ECD/CBD). The films were comparatively characterized-by photoluminescence spectra (PL), electronic absorption spectra, scanning electron microscopy (SEM) and X-ray diffraction (XRD). The SEM micrographs show that the films involved rod shaped agglomerates with various lengths and widths. XRD patterns show that the three systems involved nano-sized CdSe particles with cubic type crystals. Based on Scherrer's equation, the ECD film showed larger particle size than the CBD film, while the ECD/CBD film showed largest particles among the series. Similarly, the band gap values varied for different films as CBD > ECD > ECD/CBD. Photo electrochemical (PEC) characteristics, including photo-current density vs. voltage (J-V) plots, conversion efficiency (eta), fill factor (FF) and stability were all studied for different film electrodes. The films exhibited n-type behaviors with direct band gaps. The new ECD/CBD-CdSe electrode exhibited higher conversion efficiency (eta%similar to 4.40) than other counterparts. The results show the added value of combining ECD and CBD methods in enhancing PEC characteristics of CdSe film electrodes, even with no additional treatment. (C) 2016 Elsevier B.V. All rights reserved.
机译:多晶CdSe膜已通过三种不同的技术沉积到掺氟氧化锡(FTO /玻璃)基板上:电化学沉积(ECD),化学浴沉积(CBD)以及首次将ECD和CBD结合使用(ECD / CBD) 。通过光致发光光谱(PL),电子吸收光谱,扫描电子显微镜(SEM)和X射线衍射(XRD)对薄膜进行了比较表征。 SEM显微照片显示,膜涉及具有各种长度和宽度的棒状附聚物。 XRD图谱表明这三个系统涉及具有立方型晶体的纳米级CdSe颗粒。根据Scherrer方程,ECD膜的颗粒尺寸大于CBD膜,而ECD / CBD膜的颗粒最大。类似地,对于不同的膜,带隙值变化为CBD> ECD> ECD / CBD。研究了不同膜电极的光电化学(PEC)特性,包括光电流密度与电压(J-V)曲线,转换效率(eta),填充因子(FF)和稳定性。该膜表现出具有直接带隙的n型行为。与其他同类电极相比,新型ECD / CBD-CdSe电极具有更高的转换效率(η%相似于4.40)。结果表明,即使不进行其他处理,ECD和CBD方法的结合也可增强CdSe膜电极的PEC特性。 (C)2016 Elsevier B.V.保留所有权利。

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