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首页> 外文期刊>ACS Omega >Tandem Photocatalysis of Graphene-Stacked SnS2 Nanodiscs and Nanosheets with Efficient Carrier Separation
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Tandem Photocatalysis of Graphene-Stacked SnS2 Nanodiscs and Nanosheets with Efficient Carrier Separation

机译:高效载流子分离对石墨烯堆叠的SnS 2 纳米片和纳米片的串联光催化作用

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Being an optical semiconductor, tin disulfide (SnS_(2)) attracts increasing interest in the fields of heterogeneous photocatalysis and photovoltaics. However, support from a graphene sheet in the form of a nanocomposite is expected to increase the stability and effectiveness of a SnS_(2) material in potential applications. We report here novel nanocomposites of graphene-oxide-stacked hexagonal-shaped pristine SnS_(2) nanodiscs (NDs of two different sizes) and nanosheets synthesized using an in situ one-pot hydrothermal synthesis process and the application of the nanocomposite as an efficient heterogeneous photocatalyst. The as-synthesized morphology-oriented nanoparticles and nanocomposites were comprehensively characterized, and finally, excellent photocatalytic activity of reduced graphene oxide/SnS_(2) nanocomposites under visible-light irradiation was analyzed using UV–vis spectroscopy, high-performance liquid chromatography, and gas chromatography. While precisely manipulating the nanocomposite formation, we observed efficient visible-light-driven photocatalytic application of graphene-stacked SnS_(2) NDs in the quantitative synthesis of aniline (99.9% yield, absolute selectivity) from nitrobenzene (>99.9% conversion), in the reduction of toxic Cr(VI) to nontoxic Cr(III), and in the degradation of mutagenic organic dyes. A possible synergetic electrical and chemical coupling leads to effective carrier separation in the semiconductor and charge transport in the nanocomposite, which finally gives rise to efficient tandem photocatalysis reactions.
机译:作为光学半导体,二硫化锡(SnS_(2))在异质光催化和光伏领域引起了越来越多的兴趣。然而,期望以纳米复合物形式的石墨烯片的支持将增加SnS_(2)材料在潜在应用中的稳定性和有效性。我们在这里报告新颖的纳米复合材料的氧化石墨烯堆叠的六角形的原始SnS_(2)纳米圆盘(两种不同大小的NDs)和使用原位一锅水热合成工艺合成的纳米片,以及纳米复合物作为有效异质材料的应用光催化剂。综合表征了形态合成的纳米颗粒和纳米复合材料,最后,使用紫外-可见光谱,高效液相色谱和紫外光谱分析了可见光照射下还原型氧化石墨烯/ SnS_(2)纳米复合材料的优异光催化活性。气相色谱法。在精确控制纳米复合物的形成过程中,我们观察到了石墨烯堆叠的SnS_(2)ND在可见光驱动下的高效光催化应用,可用于从硝基苯(> 99.9%的转化率)定量合成苯胺(99.9%的产率,绝对选择性)。将有毒的六价铬还原为无毒的三价铬,以及诱变有机染料的降解。可能的协同电和化学偶联导致半导体中有效的载流子分离和纳米复合材料中的电荷传输,最终导致有效的串联光催化反应。

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