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首页> 外文期刊>Journal of Materials Science >Deposition, characterizations and photoelectrochemical performance of nanocrystalline Cu-In-Cd-S-Se thin films by hybrid chemical process
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Deposition, characterizations and photoelectrochemical performance of nanocrystalline Cu-In-Cd-S-Se thin films by hybrid chemical process

机译:杂交化学工艺纳米晶Cu-in-CD-S-SE薄膜的沉积,表征和光电化学性能

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摘要

Nanocrystalline, uniform, pentanary mixed metal chalcogenide (PMMC) thin films of copper indium cadmium sulfoselenide (CuInCd(SSe)(3)) were successfully synthesized using simple, self-organized, arrested precipitation technique in an aqueous alkaline medium. The optical, structural, morphological, compositional and electrical properties of synthesized thin films were investigated as a function indium (In3+) concentration. An optical absorption study revealed that direct allowed transition and band gap energy decreases typically from 1.46 to 1.25 eV. The X-ray diffraction studies revealed that the PMMC thin films have a nanocrystalline nature and crystallite size increases with the increase in the In3+ concentration. Tuning of surface morphology from nanospheres to peas-like morphology with uniform, well-adhered distributed throughout the substrate surface were observed by field emission scanning electron microscopy micrographs. The high-resolution transmission electron microscopy images and selected area electron diffraction pattern were illustrated that compactly interconnected particles with nanocrystalline nature. Energy-dispersive X-ray spectroscopy and X-ray photoelectron spectroscopy results confirmed that synthesized thin films had an appropriate chemical purity. The electrical conductivity and thermoelectric power measurement indicates that, the films have n-type conductivity. A photoelectrochemical conversion efficiency of 2.40% was achieved with a current density of 2.87 mA/cm(2). The developed route may provide an alternative approach to synthesize multinary metal chalcogenide thin-film solar cell. Furthermore, we have developed a predictive model of a CICSSe thin-film solar cell using the artificial neural network. The proposed model is useful for the integrated development environment for the predictive modeling and design of high-efficient solar cells.
机译:纳米晶体,均匀,戊烷混合金属硫属化物(PMMC)铜氧化铟亚硫代铵(CuIncd(SSE)(3))中的薄膜使用简单,自组织,被捕的沉淀技术在碱性介质中成功地合成。研究了合成薄膜的光学,结构,形态,组成和电性能作为函数铟(In3 +)浓度。光学吸收研究表明,直接允许的过渡和带隙能量通常从1.46到1.25eV降低。 X射线衍射研究表明,PMMC薄膜具有纳米晶体性质,结晶尺寸随着IN3 +浓度的增加而增加。通过野外发射扫描电子显微镜显微镜显微镜显微镜观察来自纳米球的表面形态与纳米球以均匀的豌豆形态,良好粘附在整个基底表面上观察。图示了高分辨率透射电子显微镜图像和选择的区域电子衍射图案,其具有纳米晶体性质的紧凑型互连颗粒。能量分散X射线光谱和X射线光电子能谱结果证实,合成的薄膜具有适当的化学纯度。电导率和热电功率测量表明,薄膜具有n型导电性。光电化学转化效率为2.40%,电流密度为2.87mA / cm(2)。发达的路线可以提供一种替代方法来合成多元金属硫属化物薄膜太阳能电池。此外,我们使用人工神经网络开发了CICSSE薄膜太阳能电池的预测模型。该拟议的模型对于高效太阳能电池的预测建模和设计的集成开发环境是有用的。

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