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首页> 外文期刊>Chemistry: A European journal >Chemical synthesis, structural characterization, optical properties, and photocatalytic activity of ultrathin ZnSe nanorods
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Chemical synthesis, structural characterization, optical properties, and photocatalytic activity of ultrathin ZnSe nanorods

机译:超薄ZnSe纳米棒的化学合成,结构表征,光学性质和光催化活性

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Ultrathin ZnSe nanorods in the cubic phase have been synthesized by the reaction of selenium and zinc oleate for 30 min at 240 °C. These nanorods showed an average diameter of 2.4 nm, which is much smaller than the Bohr size of bulk ZnSe. Thus, they exhibited a remarkable quantum size effect in terms of their optical properties. The formation of the ultrathin nanorods could be attributed to the oriented attachment mechanism, which was supported by the structure of the nanorods and the control experiments. The ultrathin nanorods were transferred into an aqueous solution by ligand exchange. The performance of these nanorods as a catalyst was examined, using the photodegradation of methyl orange as a model reaction. It was found that the ultrathin nanorods possessed better photocatalytic activities than conventional ones.
机译:硒和油酸锌在240°C下反应30分钟,合成了立方相超薄ZnSe纳米棒。这些纳米棒的平均直径为2.4 nm,远小于块状ZnSe的玻尔尺寸。因此,就其光学性质而言,它们表现出显着的量子尺寸效应。超薄纳米棒的形成可以归因于定向附着机制,这由纳米棒的结构和控制实验所支持。通过配体交换将超薄纳米棒转移到水溶液中。使用甲基橙的光降解作为模型反应,研究了这些纳米棒作为催化剂的性能。发现超薄纳米棒具有比常规纳米棒更好的光催化活性。

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