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Core–shell TiO2−x-CuyO microspheres for photogeneration of cyclic carbonates under simulated sunlight

机译:核壳二氧化钛−x-CuyO微球photogeneration循环下的碳酸盐模拟阳光

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摘要

Propylene carbonates are important organic solvents and feedstocks for different applications, including synthesis of polymers and Li-batteries. The generation of propylene carbonate utilising anthropogenic CO2 and renewable solar energy offers an alternative sustainable process with a closed loop carbon cycle. The development of microstructured photocatalysts with desired properties, including high degree of product selectivity, wide range of optical properties, and maximised conversion yield, plays an important role for effective production of propylene carbonate from CO2. A hierachical hollow core with a double shell of TiO2−x-Cu2O-CuO was fabricated using the versatile solvothermal-microwave synthesis method. The fabricated sample revealed effective cascading of photogenerated electrons and holes that promoted the conversion of propylene carbonate (i.e., 1.6 wt%) under 1 Sun irradiation.
机译:丙烯碳酸酯是重要的有机食品不同溶剂和原料应用程序,包括聚合物和合成Li-batteries。利用人为二氧化碳和碳酸盐可再生的太阳能提供了一个选择可持续的过程闭环碳周期。论文所需的属性,包括高度的产品选择性,广泛的光学性质,最大化转换产量、有效发挥着重要作用碳酸丙烯酯的生产二氧化碳。天使的中空核心的双壳二氧化钛−x-Cu2O-CuO组合使用多功能solvothermal-microwave合成方法。级联的photogenerated电子和空穴这促进了丙烯的转化率碳酸(即1.6 wt %)阳光下1辐照。

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