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One-step synthesis of NiTe2 nanorods coated with few-layers MoS2 for enhancing photocatalytic activity

机译:涂有几层MOS2的NITE2纳米棒的一步合成,用于增强光催化活性

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摘要

A facile one-step hydrothermal process was developed for fabrication of three-dimensional hierarchical NiTe2@MoS2 heterostructures. A few layers of MoS2 uniformly grew on the NiTe2 nanorods, possessing a higher surface area. The strategy was extended to CoTe2@MoS2 heterostructures with a few layers of MoS2. The photocatalytic activities of the heterostructures were evaluated by the photodegradation of methylene blue. The composites show strong adsorption ability and much better photocatalytic efficiency in comparison with pure MoS2 microflowers and NiTe2 nanorods. Especially, the NiTe2@MoS2 heterostructure with 40 wt% of MoS2 presents the highest performance in photocatalytic degradation of dye molecules, which is attributed to the formation of hierarchical network between NiTe2 nanorods and MoS2 nanosheets. And the possible mechanism of the enhanced photocatalytic activities was discussed.
机译:开发了一种容易的一步水热工艺,用于制造三维等离子石的eVite2。 几层MOS2均匀地成长在NITE2纳米棒上,具有更高的表面积。 该策略扩展到Cote2 @ MOS2异质结构,几层MOS2。 通过亚甲基的光降解评价异质结构的光催化活性。 与纯MOS2微射线和NITE2纳米棒相比,复合材料显示出强烈的吸附能力和更好的光催化效率。 特别地,具有40wt%的MOS2的Nite2 @ MOS2异质结构在染料分子的光催化降解中呈现最高性能,这归因于Nite2纳米棒与MOS2纳米片之间的分层网络的形成。 讨论了增强的光催化活动的可能机制。

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