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Importance of Clean Surfaces on the Catalyst: SnS2 Nanorings for Environmental Remediation

机译:清洁表面在催化剂上的重要性:用于环境修复的SnS2纳米环

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The focus of the work is the synthesis of SnS2 nanomaterials with (peg-SnS2NF) and without (sf-SnS2NR) the involvement of the organic template and the comparative study of their catalytic activities. The synthesis of these materials was achieved in a single-step procedure aided by hexamethyldisilazane (HMDS). These nanoparticles were subjected to X-ray diffraction, transmission electron microscopy, scanning electron microscopy, Raman spectroscopy, and UV–vis spectroscopy analyses to investigate their structural, topographical, surface, and optical properties. The present work suggests that the surfactant-free SnS2 nanoring (sf-SnS2NR) catalyst has lower surface area compared to the poly(ethylene glycol)-stabilized SnS2 nanoflower (peg-SnS2NF) catalyst but shows high activity under visible light for the photoreduction of Cr(VI) and the photocatalytic degradation of organic dyes. The work exposed the importance of the clean surfaces on the catalyst and is expected to have a high impact on the photocatalytic activity of the SnS2 nanomaterial. The study also endorses the utility of the HMDS-assisted synthetic method for the production of multifunctional semiconductor tin disulfide nanomaterials with multiple potential applications.
机译:工作的重点是合成具有(peg-SnS2NF)和不具有(sf-SnS2NR)有机模板的SnS2纳米材料及其催化活性的比较研究。这些材料的合成是在六甲基二硅氮烷(HMDS)的辅助下以一步法完成的。对这些纳米颗粒进行了X射线衍射,透射电子显微镜,扫描电子显微镜,拉曼光谱和UV-vis光谱分析,以研究其结构,形貌,表面和光学性质。目前的工作表明,与聚乙二醇稳定的SnS2纳米花(peg-SnS2NF)催化剂相比,无表面活性剂的SnS2纳米环(sf-SnS2NR)催化剂具有较低的表面积,但在可见光下具有较高的光还原活性。 Cr(VI)和有机染料的光催化降解。这项工作暴露了催化剂上清洁表面的重要性,并有望对SnS2纳米材料的光催化活性产生重大影响。该研究还认可了HMDS辅助合成方法在生产具有多种潜在应用的多功能半导体二硫化锡纳米材料中的实用性。

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