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Insight into the core-shell structures of Cu-In-S microspheres

机译:深入了解Cu-In-S微球的核-壳结构

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In this study we report about the inner and outer structure of CuInS_2 microspheres which might be used e.g. in pastes for simple, low-cost solar cell preparation, as well as in electrodes for light-driven water splitting. The microspheres are synthesized via a mild, template-free solvothermal synthesis route and characterised by electron and focused ion beam microscopy, X-ray diffraction, inductively coupled plasma atomic emission and energy dispersive X-ray spectroscopy. The investigations of cross sections prepared by focused ion beam showed that the spheres consist of compact cores and flaky surface structures. Depending on the reaction time, the core possesses a stoichiometric or Cu-rich chemical composition surrounded by an In-rich shell. The flaky surface always comprises a stoichiometric composition in tetragonal chalcopyrite crystal structure, whereas the other areas additionally show minor contributions of CuS, and CuInS_2 in hexagonal wurtzite structure. The presence of different phases can be beneficial for future applications since they offer different absorption behaviour in the visible range.
机译:在这项研究中,我们报告了可能用于例如CuInS_2微球的内部和外部结构。用于简单,低成本太阳能电池制备的浆料,以及用于光驱动水分解的电极。微球是通过温和,无模板的溶剂热合成路线合成的,并通过电子和聚焦离子束显微镜,X射线衍射,电感耦合等离子体原子发射和能量色散X射线光谱学进行表征。聚焦离子束制备的截面研究表明,球体由致密的核和片状表面结构组成。取决于反应时间,核具有被富In壳包围的化学计量或富Cu化学组成。片状表面总是在四方黄铜矿晶体结构中包含化学计量组成,而其他区域在六方纤锌矿结构中还显示出少量的CuS和CuInS_2。不同相的存在对于将来的应用可能是有益的,因为它们在可见光范围内提供不同的吸收行为。

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