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首页> 外文期刊>Angewandte Chemie >Phase-Contact Engineering in Mono- and Bimetallic Cu-Ni Co-catalysts for Hydrogen Photocatalytic Materials
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Phase-Contact Engineering in Mono- and Bimetallic Cu-Ni Co-catalysts for Hydrogen Photocatalytic Materials

机译:用于氢催化材料的单型和双金属Cu-Ni助催化剂中的相位接触工程

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摘要

Understanding how a photocatalyst modulates its oxidation state, size, and structure during a photocatalytic reaction under operando conditions is strongly limited by the mismatch between (catalyst) volume sampled by light and, to date, the physicochemical techniques and probes employed to study them. A synchrotron micro-beam X-ray absorption spectroscopy study together with the computational simulation and analysis (at the X-ray cell) of the light-matter interaction occurring in powdered TiO2-based monometallic Cu, Ni and bimetallic CuNi catalysts for hydrogen production from renewables was carried out. The combined information unveils an unexpected key catalytic role involving the phase contact between the reduced and oxidized non-noble metal phases in all catalysts and, additionally, reveals the source of the synergistic Cu-Ni interaction in the bimetallic material. The experimental method is applicable to operando studies of a wide variety of photocatalytic materials.
机译:理解光催化剂如何在光催化剂期间调节其氧化状态,尺寸和结构在光催化反应下,通过光线采样的(催化剂)体积之间的错配,迄今为止,用于研究它们的物理化学技术和探针。 一种同步辐射微束X射线吸收光谱研究与基于粉末的TiO2的单金属铜,Ni和双金属CUNI催化剂的耐氢产生的光物质相互作用的计算模拟和分析(在X射线细胞处)一起研究 再生能够进行。 组合信息揭示了涉及所有催化剂中的减少和氧化非贵金属相之间的相接触的意外的关键催化作用,另外,揭示了双金属材料中的协同Cu-Ni相互作用的来源。 该实验方法适用于各种光催化材料的Operando研究。

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