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Controllable synthesis, optical and photocatalytic properties of CuS nanomaterials with hierarchical structures

机译:具有分级结构的CuS纳米材料的可控合成,光学和光催化性能

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The controlled synthesis of CuS nanomaterials with hierarchical structures has been realized by chemical synthesis between copper nitrate trihydrate and thiourea via a solvothermal route. X-ray diffraction, scanning electron microscopy, and transmission electron microscopy were used to characterize the products. It was shown that CuS nanomaterials with hierarchical structures were composed of numerous nanoplates or nanorods. Experiments demonstrated that the morphologies of CuS nanomaterials were significantly influenced by reaction temperature, growth time and sulfur sources. A growth model was proposed for the selective formation of CuS hierarchical structures. The optical properties of the CuS hierarchical structures were investigated by ultraviolet-visible spectroscopy and photoluminescence spectroscopy. The ultraviolet-visible spectrum had a broad absorption in the visible range and the photoluminescence spectrum showed a strong green emission. Photocatalytic performance of the CuS hierarchical structures was evaluated by measuring the decomposition rate of methylene blue solution under natural light. The CuS hierarchical structures showed good photocatalytic activity.
机译:通过三水合硝酸铜与硫脲之间的溶剂热化学合成,实现了具有层次结构的CuS纳米材料的可控合成。 X射线衍射,扫描电子显微镜和透射电子显微镜用于表征产物。结果表明,具有分级结构的CuS纳米材料由许多纳米板或纳米棒组成。实验表明,CuS纳米材料的形貌受到反应温度,生长时间和硫源的显着影响。提出了一种用于选择性形成CuS层次结构的生长模型。通过紫外可见光谱和光致发光光谱研究了CuS分层结构的光学性质。紫外线-可见光谱在可见光范围内具有宽吸收性,而光致发光光谱显示出强烈的绿色发射。通过在自然光下测量亚甲基蓝溶液的分解速率来评估CuS分层结构的光催化性能。 CuS分级结构显示出良好的光催化活性。

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