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首页> 外文期刊>Nanoscale >Anion exchange induced formation of kesterite copper zinc tin sulphide-copper zinc tin selenide nanoheterostructures
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Anion exchange induced formation of kesterite copper zinc tin sulphide-copper zinc tin selenide nanoheterostructures

机译:阴离子交换诱导kesterite的形成铜锌锡硒化锌锡sulphide-coppernanoheterostructures

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摘要

We report the colloidal synthesis of quaternary kesterite CZTS-CZTSe heterostructures via anion exchange reactions on a kesterite CZTS template. The crystal phase selectivity during the synthesis (kesterite vs. wurtzite) is due to the initial nucleation of cubic Cu9S5 seeds, followed by incorporation of Zn and Sn. Upon injection of Se-precursor, which triggered simultaneous anion exchange and overgrowth of the pristine CZTS template, sandwich CZTS-CZTSe (core-tip) nanoheterostructures were obtained. X-ray photoelectron spectroscopy (XPS) and optical band gap measurement results suggest a change of intrinsic electronic structure of CZTS by Se-treatment. Our study not only provides insight into mechanisms of formation of kesterite CZTS nanocrystals (NCs) and subsequent anion exchange reactions, but also opens doors to access novel CZTSSe nanostructures for potential applications.
机译:我们报告的胶体合成四元kesterite CZTS-CZTSe heterostructures途经anion交换反应在kesterite CZTS模板。水晶阶段期间选择性合成(kesterite比纤锌矿型)是由于初始成核的立方Cu9S5种子,紧随其后公司的锌和锡。同时Se-precursor,引发阴离子交换和繁茂的原始CZTS模板,三明治CZTS-CZTSe (core-tip)nanoheterostructures。光电子能谱(XPS)和光学波段测量结果显示改变的差距内在CZTS的电子结构Se-treatment。成的生成机制kesterite CZTS纳米晶体(nc)和随后的阴离子交换反应,但也打开门进入小说CZTSSe纳米结构的潜在的应用。

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