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S-Doped Sb2O3 Nanocrystal: an Efficient Visible-Light Catalyst for Organic Degradation

机译:S掺杂的Sb2O3纳米晶体:一种有效的有机降解可见光催化剂

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摘要

The S-doped Sb2O3 nanocrystals were successfully synthesized using SbCl3 and thioacetamide (TAA) as precursors via a facile one-step hydrothermal method. The effects of pH of the precursor reaction solution on the product composition and property were determined. The results indicated that the doping amount of S could be tuned by adjusting the pH of the precursor solution. Furthermore, the S entered into the interstitial site of Sb2O3 crystals as S2−, which broadened the absorption wavelength range of the Sb2O3 nanocrystal. The S-doped Sb2O3 exhibited an excellent visible-light-driven photocatalytic activity in the decomposition of methyl orange and 4-phenylazophenol. Last, a possible photocatalytic mechanism of the S-doped Sb2O3 under visible light irradiation was proposed.
机译:以SbCl3和硫代乙酰胺(TAA)为前体,通过简便的一步水热法成功合成了S掺杂的Sb2O3纳米晶体。确定了前体反应溶液的pH对产物组成和性质的影响。结果表明,可以通过调节前体溶液的pH来调节S的掺杂量。此外,S作为S 进入Sb 2 O 3晶体的间隙位置,从而扩大了Sb 2 O 3纳米晶体的吸收波长范围。 S掺杂的Sb2O3在甲基橙和4-苯基偶氮苯酚的分解中表现出出色的可见光驱动的光催化活性。最后,提出了在可见光照射下掺Sb 2 O 3的可能的光催化机理。

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