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首页> 外文期刊>ChemCatChem >Pompon Dahlia-like Cu2O/rGO Nanostructures for Visible Light Photocatalytic H-2 Production and 4-Chlorophenol Degradation
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Pompon Dahlia-like Cu2O/rGO Nanostructures for Visible Light Photocatalytic H-2 Production and 4-Chlorophenol Degradation

机译:Pompon Dahlia样Cu2O / rgo纳米结构用于可见光光催化H-2生产和4-氯酚降解

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Hierarchical Cu2O nanospheres with a Pompon Dahlia-like morphology were prepared by a one-pot synthesis employing electrostatic self-assembly. Nanocomposite analogues were also prepared in the presence of reduced graphene oxide (rGO). Photophysical properties of the hierarchical Cu2O nanospheres and Cu2O/rGO nanocomposite were determined, and their photocatalytic applications evaluated for photocatalytic 4-chlorophenol (4-CP) degradation and H-2 production. Introduction of trace (<1 wt %) rGO improves the apparent quantum efficiency (AQE) at 475 nm of hierarchical Cu2O for H-2 production from 2.23 % to 3.35 %, giving an increase of evolution rate from 234 mu mol.g(-1).h(-1) to 352 mu mol.g(-1).h(-1) respectively. The AQE for 4-CP degradation also increases from 52 % to 59 %, with the removal efficiency reaching 95 % of 10 ppm 4-CP within 1 h. Superior performance of the hierarchical Cu2O/rGO nanocomposite is attributable to increased visible light absorption, reflected in a greater photocurrent density. Excellent catalyst photostability for >6 h continuous reaction is observed.
机译:采用静电自组装的单盆合成制备具有庞康大丽花形态的分层Cu2O纳米球。还在氧化石墨烯(RGO)的存在下制备纳米复合材料类似物。测定了等级Cu2O纳米球和Cu2O / Rgo纳米复合材料的光物理性质,并评估了光催化应用,用于光催化4-氯酚(4-CP)降解和H-2产生。痕量的痕量(<1wt%)RGO可提高475nm的表观量子效率(AQE)的分层CU2O,用于H-2生产的2.23%至3.35%,从234 mmol.g增加进化率( - 1).h(-1)至352μmmol.g(-1).h(-1)。 4-CP降解的AQE也从52%增加到59%,除去效率在1小时内达到10 ppm 4-cp的95%。等级化Cu2O / Rgo纳米复合材料的优异性能可归因于增加可见光吸收,以更大的光电流密度反映。观察到优异的催化剂光稳定性> 6小时的连续反应。

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