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首页> 外文期刊>Nanotechnology >Novel 2D hybrids composed of SnIn4S8 nanoplates on BiOBr nanosheets for enhanced photocatalytic applications
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Novel 2D hybrids composed of SnIn4S8 nanoplates on BiOBr nanosheets for enhanced photocatalytic applications

机译:由Snin4S8纳米板组成的新型2D杂交物,用于增强光催化应用的BioBR纳米片

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In the last ten years, bismuth oxybromide (BiOBr) has attracted wide attention due to its superior optoelectronic property. However, its practical application still suffers from slow carrier transport and high carrier recombination. Here we report a kind of novel tannum indium sulfide (SnIn4S8)/BiOBr hybrid prepared by a two-step hydrothermal method. The results showed that small amount of SnIn4S8 had no influence on the crystal phase of BiOBr, but the morphology could be regulated from nanosheet to nanoflower. Specially, SnIn4S8 exerted a slight effect on the light absorption and band gap of BiOBr. Importantly, SnIn4S8/BiOBr hybrids exhibited remarkable enhancement of the photocatalytic activity towards the degradation of rhodamin B (RhB) dye molecules. SnIn4S8/BiOBr-0.20 with 99.8% degradation efficiency had the highest photocatalytic activity within 40 min, while it was only 71.1% for pure BiOBr. The enhanced photocatalytic activity was mainly attributed to efficient interfacial transfer and low carrier recombination. This work will help us understand the photocatalytic mechanism of bismuth oxyhalide hybrids.
机译:在过去的十年中,铋氧杂物(BioBR)由于其优越的光电性能引起了广泛的关注。然而,其实际应用仍然存在缓慢的载体运输和高载体重组。在这里,我们通过两步水热法制备了一种新的Tangum硫化物(Snin4S8)/ BioBR杂交。结果表明,少量的Snin4S8对BioBR的结晶阶段没有影响,但可以将形态从纳米液调节到纳米灯。特别是,Snin4S8对BioBR的光吸收和带隙产生了轻微的影响。重要的是,SnIn4S8 / BioBR杂种杂交种表现出显着的增强光催化活性朝向罗达曼B(RHB)染料分子的降解的增强。 SNIN4S8 / BIOBR-0.20具有99.8%的降解效率在40分钟内具有最高的光催化活性,而纯BIOBR仅为71.1%。增强的光催化活性主要归因于有效的界面转移和低载体重组。这项工作将帮助我们了解氧化氧化物杂种的光催化机制。

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