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A facile chemical conversion synthesis of Sb2S3 nanotubes and the visible light-driven photocatalytic activities

机译:Sb2S3纳米管的简便化学转化合成及可见光驱动的光催化活性

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摘要

We report a simple chemical conversion and cation exchange technique to realize the synthesis of Sb2S3 nanotubes at a low temperature of 90°C. The successful chemical conversion from ZnS nanotubes to Sb2S3 ones benefits from the large difference in solubility between ZnS and Sb2S3. The as-grown Sb2S3 nanotubes have been transformed from a weak crystallization to a polycrystalline structure via successive annealing. In addition to the detailed structural, morphological, and optical investigation of the yielded Sb2S3 nanotubes before and after annealing, we have shown high photocatalytic activities of Sb2S3 nanotubes for methyl orange degradation under visible light irradiation. This approach offers an effective control of the composition and structure of Sb2S3 nanomaterials, facilitates the production at a relatively low reaction temperature without the need of organics, templates, or crystal seeds, and can be extended to the synthesis of hollow structures with various compositions and shapes for unique properties.
机译:我们报告了一种简单的化学转化和阳离子交换技术,可在90°C的低温下实现Sb2S3纳米管的合成。 ZnS和Sb2S3之间溶解度的巨大差异得益于ZnS纳米管向Sb2S3的成功化学转化。通过连续退火,已生长的Sb2S3纳米管已从弱结晶转变为多晶结构。除了对退火前后得到的Sb2S3纳米管进行详细的结构,形态和光学研究外,我们还显示了Sb2S3纳米管在可见光照射下对甲基橙降解的高光催化活性。该方法可有效控制Sb2S3纳米材料的组成和结构,有助于在较低的反应温度下进行生产,而无需有机物,模板或晶种,并可扩展为合成具有各种组成和结构的空心结构。形状以获得独特的属性。

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