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首页> 外文期刊>Nanoscale >Monitoring the insertion of Pt into Cu2-xSe nanocrystals: a combined structural and chemical approach for the analysis of new ternary phases
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Monitoring the insertion of Pt into Cu2-xSe nanocrystals: a combined structural and chemical approach for the analysis of new ternary phases

机译:监测Pt插入Cu2-xSe纳米晶体:组合结构和化学方法分析新三元阶段

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摘要

The tuning of the chemical composition in nanostructures is a key aspect to control for the preparation of new multifunctional and highly performing materials. The modification of Cu2-xSe nanocrystals with Pt could provide a good way to tune both optical and catalytic properties of the structure. Although the heterogeneous nucleation of metallic Pt domains on semiconductor chalcogenides has been frequently reported, the insertion of Pt into chalcogenide materials has not been conceived so far. In this work we have explored the experimental conditions to facilitate and enhance the insertion of Pt into the Cu2-xSe nanocrystalline lattice, forming novel ternary phases that show a high degree of miscibility and compositional variability. Our results show that Pt is mainly found as a pure metal or a CuPt alloy at high Pt loads (Pt : Cu atomic ratio in reaction medium >1). However, two main ternary CuPtSe phases with cubic and monoclinic symmetry can be identified when working at lower Pt : Cu atomic ratios. Their structure and chemical composition have been studied by local STEM-EDS and HRTEM analyses. The samples containing ternary domains have been loaded on graphite-like C3N4(g-C3N4) semiconductor layers, and the resulting nanocomposite materials have been tested as promising photocatalysts for the production of H(2)from aqueous ethanolic solutions.
机译:化学成分的优化纳米结构是控制的一个关键方面准备新的多功能和高度执行材料。与Pt纳米晶体可以提供一个好方法优化光学和催化性能结构。金属Pt在半导体领域硫属化合物已经被频繁报道,Pt插入硫族化物材料到目前为止没有怀孕。探讨了实验条件促进和提高Pt插入Cu2-xSe纳米晶体晶格,形成小说显示高度的三进制阶段混溶和成分的变化。结果表明,Pt主要是作为一个纯粹的发现金属或CuPt合金在高Pt负载(Pt:铜原子比例在反应介质> 1)。主要与立方和三元CuPtSe阶段单斜对称时可以识别工作在低Pt:铜原子比率。结构和化学成分研究了由当地STEM-EDS介绍和分析。包含三元域的样本装上graphite-like C3N4 (g-C3N4)半导体层,和由此产生的纳米复合材料被测试有前途的生产的催化剂从水ethanolic H(2)解决方案。

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