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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Effect of dopant concentration on visible light driven photocatalytic activity of Sn1-xAgxS2
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Effect of dopant concentration on visible light driven photocatalytic activity of Sn1-xAgxS2

机译:掺杂剂浓度对Sn1-xAgxS2可见光驱动光催化活性的影响

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Tin(IV) sulfide (SnS2), as a mid-band-gap semiconductor shows good potential as an excellent photocatalyst due to its low cost, wide light spectrum response and environment-friendly nature. However, to meet the demands of large-scale water treatment, a SnS2 photocatalyst with a red-shifted band gap, increased surface area and accelerated molecule and ion diffusion is required. Doping is a facile method to manipulate the optical and chemical properties of semiconductor materials simultaneously. In this work, SnS2 photocatalysts with varied Ag doping content are synthesized through a facile one-step hydrothermal method. The product is characterized by XRD, SEM, TEM and UV-Vis spectrometry. The photocatalytic activity of the as-prepared Sn1-xAgxS2 is studied by the degradation of methylene blue (MB) dye under solar light irradiation. It is found that increasing the Ag dopant concentration can effectively increase the solar light adsorption efficiency of the photocatalyst and accelerate heterogeneous photocatalysis. The optimal concentration of Ag dopant is found to be 5% with the highest rate constant being 1.8251 hour(-1). This study demonstrates that an optimal amount of Ag doping can effectively increase the photocatalytic performance of SnS2 and will promote the commercialization of such photocatalysts in the photocatalytic degradation of organic compounds.
机译:硫化锡(IV)(SnS2)作为中带隙半导体,由于其低成本,宽光谱响应和环境友好的特性,具有作为优良光催化剂的良好潜力。然而,为了满足大规模水处理的需求,需要具有红移带隙,增加的表面积以及加速的分子和离子扩散的SnS 2光催化剂。掺杂是一种同时控制半导体材料的光学和化学性质的简便方法。在这项工作中,通过简便的一步水热法合成了具有不同Ag掺杂量的SnS2光催化剂。该产物通过XRD,SEM,TEM和UV-Vis光谱法表征。通过在太阳光照射下降解亚甲基蓝(MB)染料研究了制备的Sn1-xAgxS2的光催化活性。发现增加Ag掺杂剂的浓度可以有效地提高光催化剂的太阳光吸收效率并加速多相光催化。发现Ag掺杂剂的最佳浓度为5%,最高速率常数为1.8251 hour(-1)。这项研究表明,最佳的Ag掺杂量可以有效地提高SnS2的光催化性能,并在有机化合物的光催化降解中促进此类光催化剂的商业化。

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