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首页> 外文期刊>Applied Surface Science >Photocorrosion suppression and photoelectrochemical (PEC) enhancement of ZnO via hybridization with graphene nanosheets
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Photocorrosion suppression and photoelectrochemical (PEC) enhancement of ZnO via hybridization with graphene nanosheets

机译:通过与石墨烯纳米片的杂交来抑制ZnO的光腐蚀和光电化学(PEC)增强

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摘要

Graphene-ZnO nanocomposites with different morphologies (nanoparticles and nanorods) were synthesized by alkali precipitation and solvothermal process. The influence of graphene nanosheets on photocatalytic and photoelectrochemical (PEC) activity of graphene-ZnO nanorods (ZnO/GNR) and graphene/ZnO nanoparticles (ZnO/GNP) was investigated. ZnO/GNR showed greatly increased photocatalytic degradation of methyl orange (MO): 2-, 2.5- and 3.5-fold higher under UV light and 1.6-, 4.7-, and 11-fold higher under visible light than that for ZnO/GNP, ZnO NR and ZnO NP, respectively. In addition, ZnO/GNR showed remarkable photocorrosion suppression (similar to 0.5%) compared to 10, 35 and 45% for ZnO/GNP, ZnO NR and ZnO NP, respectively. Furthermore, PEC results indicated a remarkable 6-fold enhancement photocurrent density for ZnO/GNR compared to ZnO NR. This enhancement is attributed to the crucial role of graphene in the electron transfer from ZnO NR into graphene sheets increasing the electron lifetime, leading to a minimized charge recombination.
机译:通过碱沉淀和溶剂热法合成了具有不同形态(纳米粒子和纳米棒)的石墨烯-ZnO纳米复合材料。研究了石墨烯纳米片对石墨烯-ZnO纳米棒(ZnO / GNR)和石墨烯/ ZnO纳米颗粒(ZnO / GNP)的光催化和光电化学(PEC)活性的影响。 ZnO / GNR显着提高了甲基橙(MO)的光催化降解:与ZnO / GNP相比,在紫外光下,甲基橙(MO)的降解高2倍,2.5倍和3.5倍,在可见光下分别高1.6倍,4.7倍和11倍, ZnO NR和ZnO NP。此外,ZnO / GNR表现出显着的光腐蚀抑制作用(约0.5%),而ZnO / GNP,ZnO NR和ZnO NP分别为10%,35%和45%。此外,PEC结果表明,与ZnO NR相比,ZnO / GNR的光电流密度显着提高了6倍。这种增强归因于石墨烯在电子从ZnO NR转移到石墨烯片中的关键作用,从而延长了电子寿命,从而使电荷复合最小化。

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