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首页> 外文期刊>Nanoscale >Highly efficient visible-light-driven photocatalytic activities in synthetic ordered monoclinic BiVO4 quantum tubes-graphene nanocomposites
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Highly efficient visible-light-driven photocatalytic activities in synthetic ordered monoclinic BiVO4 quantum tubes-graphene nanocomposites

机译:高效visible-light-driven光催化合成有序活动单斜BiVO4量子tubes-graphene纳米复合材料

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Photocatalytic purification of polluted water is a very promising way to alleviate the increasingly serious water resources crisis. Despite tremendous efforts, developing visible-light-driven photocatalysts with high activity at low cost still remains a great challenge. Herein, we report for the first time the design and synthesis of ordered m-BiVO4 quantum tubes-graphene nanocomposites that exhibit unprecedented visible-light-driven photocatalytic activities, over 20 times faster than that of commercial P25 or bulk BiVO4 and roughly 1.5 times more active than that of bare m-BiVO4 quantum tubes. Notably, the unusual photoreactivities arise from the synergistic effects between the microscopic crystal structure of m-BiVO4 and macroscopic morphological features of ordered m-BiVO4 quantum tubes and two-dimensional graphene sheets. These structural features help to provide increased photocatalytic reaction sites, extended photoresponding range, enhanced charge transportation and separation efficiency simultaneously. Briefly, this work not only provides a simple and straightforward strategy for fabricating highly efficient and stable graphene-based nanocomposites, but also proves that these unique structures are excellent platforms for significantly improving their visible-light-driven photoactivities, holding great promise for their applications in the field of purifying polluted water resources.
机译:光催化净化污水的非常有前途的方法来缓解日益严重的水资源危机。巨大的努力,发展visible-light-driven催化剂具有高以低成本仍然是一个伟大的活动挑战。命令m-BiVO4的设计和合成量子tubes-graphene纳米复合材料表现出前所未有的visible-light-driven光催化活动,超过20倍比商业P25或批量BiVO4和约1.5倍更积极比光秃秃的m-BiVO4量子管。从协同photoreactivities出现之间的微观晶体结构的影响m-BiVO4和宏观形态学特征的命令m-BiVO4量子管和二维石墨烯表。帮助提供增加光催化特性反应网站,扩展photoresponding范围,增强型电荷运输和分离同时效率。只提供了一种简单、直观的制造高效的策略稳定的石墨烯纳米复合材料,但也证明这些独特的结构是优秀的显著提高的平台visible-light-driven感光,持有他们的应用程序的良好前景净化被污染的水资源。

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