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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Structural Evolution of Cu2O-Derived Hybrids Comprised of Copper Cores, a Silica Interlayer, and Carbon as the Outlayer
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Structural Evolution of Cu2O-Derived Hybrids Comprised of Copper Cores, a Silica Interlayer, and Carbon as the Outlayer

机译:由铜芯,二氧化硅中间层和碳组成的Cu2O衍生杂交种的结构演变为低估

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摘要

Constructing yolk-shell-structured non-noble-metal composites is very important for improving their activity and stability in catalytic performance. Herein, we report a facile strategy for the synthesis of ternary Cu@SiO2@C yolk-shell composites by converting the resorcinol-formaldehyde (RF) resin-coated Cu2O@SiO2 with a core-shell structure via a thermal treatment under a N-2 atmosphere. Notably, the annealing temperature and silica interlayer play vital roles in modulating their structures and catalytic performance. Moreover, this strategy may pave a new way to constructing non-noble-metal-based composites with yolk-shell structures.
机译:构建卵黄壳结构的非贵金属复合材料对于改善催化性能的活性和稳定性非常重要。 在此,我们通过在N-下通过热处理将间苯二酚 - 甲醛(RF)树脂涂覆的CU 2 O 22与核 - 壳结构转化为核 - 壳结构,报告用于合成三元Cu @ SiO2 @ C蛋白壳复合材料的容易策略。 2氛围。 值得注意的是,退火温度和二氧化硅中间层在调节其结构和催化性能方面发挥着重要作用。 此外,该策略可以利用蛋黄壳结构构建非贵金属基复合材料的新方法。

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