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Fabricating visible-light photoactive 3D flower-like BiOCl nanostructures via a one-step solution chemistry method at room temperature

机译:通过一步溶液化学方法在室温下制备可见光光敏3D花状BiOCl纳米结构

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Three dimensional (3D) flower-like BiOCl nanostructures were synthesized by a facile and mild solution chemistry method at room temperature without any post-treatment. It is found that the volume ratios of ethylene glycol to water (EG-W) play an important role in the nucleation and growth of BiOC1, which consequently determine the self-assembly and thus the morphology of BiOCl nanostructures. In the solution of high EG-W ratio, the thin nanosheets self-assemble into 3D flower-like nanostructures, resulting in large surface area and abundant oxygen vacancies. The oxygen vacancies facilitate the trapping and transfer of photogenerated electrons to adsorbed oxygen molecules, producing active O-2(center dot)- species. As a result, the BiOCl nanoflowers exhibit much higher photocatalytic activity for RhB degradation under visible light irradiation than their nanosheets counterparts synthesized in the solution of low EG-W ratios.
机译:通过简便,温和的溶液化学方法在室温下合成了三维(3D)花状BiOCl纳米结构,无需进行任何后处理。发现乙二醇与水的体积比(EG-W)在BiOC1的成核和生长中起重要作用,从而决定了BiOCl纳米结构的自组装和形态。在高EG-W比的解决方案中,薄纳米片自组装成3D花状纳米结构,导致较大的表面积和丰富的氧空位。氧空位有利于光生电子的俘获和转移到吸附的氧分子上,从而产生活性的O-2(中心点)物质。结果,BiOCl纳米花与在低EG-W比溶液中合成的纳米片对应物相比,在可见光照射下对RhB降解表现出更高的光催化活性。

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