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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Decorating hierarchical Bi2MoO6 microspheres with uniformly dispersed ultrafine Ag nanoparticles by an in situ reduction process for enhanced visible light-induced photocatalysis
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Decorating hierarchical Bi2MoO6 microspheres with uniformly dispersed ultrafine Ag nanoparticles by an in situ reduction process for enhanced visible light-induced photocatalysis

机译:通过原位还原工艺用均匀分散的超细Ag纳米粒子装饰Bi2MoO6分层微球,以增强可见光诱导的光催化作用

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摘要

In this work, we have demonstrated an efficient Sn (II) mediated in situ reduction strategy to assemble silver nanoparticles on Bi2MoO6 microspheres. The Ag loading can be readily controlled by varying the volume of Ag (NH3)2OH aqueous solution. Meanwhile, the ultrafine silver spherical nanoparticles with uniform diameters are free of protection ligands and are well dispersed on the surface of Bi2MoO6 nanosheet without aggregation even at high loading. Photocatalytic test demonstrated that as-adopted in situ reduction strategy was an effective means to enhance the photocatalytic activity of Bi2MoO6 nanosheet-based microspheres under visible light irradiation (?>420nm). The enhancement performance is believed to be induced by the intimate contact interface, where silver nanoparticles serve as good electron acceptor for facilitating quick photoexcited electron transfer and thus decreasing electron-hole recombination.
机译:在这项工作中,我们已经证明了一种有效的Sn(II)介导的原位还原策略,可以在Bi2MoO6微球上组装银纳米颗粒。通过改变Ag(NH 3)2 OH水溶液的体积可以容易地控制Ag的负载。同时,具有均匀直径的超细银球形纳米颗粒没有保护配体,并且即使在高负载下也很好地分散在Bi 2 MoO 6纳米片的表面上而没有聚集。光催化试验表明,采用原位还原策略是增强Bi2MoO6纳米片基微球在可见光(λ> 420nm)下的光催化活性的有效手段。据信增强性能是由紧密接触界面诱导的,其中银纳米颗粒充当良好的电子受体,用于促进快速的光激发电子转移并因此减少电子-空穴复合。

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