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单晶三氧化钼纳米带:光催化、光电导及电化学性质

Single-crystalline molybdenum trioxide nanoribbons: photocatalytic, photoconductive, and electrochemical properties.

作者信息

Cheng Liang, Shao Mingwang, Wang Xiuhua, Hu Haibo

机构信息

Anhui Key Laboratory of Functional Molecular Solids, College of Chemistry and Materials Science, Anhui Normal University, Wuhu, 241000, China.

出版信息

Chemistry. 2009;15(10):2310-6. doi: 10.1002/chem.200802182.

Abstract

Large-scale, high-purity and uniform alpha-MoO(3) nanoribbons have been synthesized by a facile hydrothermal route without employing surfactants or templates. The as-prepared alpha-MoO(3) nanoribbons were up to several micrometers in length, 100 nm in width, 15-20 nm in thickness, and grew along the [001] direction. The obtained nanoribbons exhibited a quantum size effect in optical properties, showing a blue shift of the band gap and direct transitions compared with the values of bulk MoO(3). The nanoribbons also showed superior photocatalytic ability in the photodegradation reaction of an aqueous solution of Rhodamine B under visible light. Furthermore, the as-prepared alpha-MoO(3) materials exhibited linear current-voltage (I-V) characteristics and excellent photoresponse. As the light source was switched on and off, the currents could be reversibly switched between high and low value at the voltage of 0.1 V. Electrochemical measurements predicted that the alpha-MoO(3)/carbon fiber modified microelectrode would display excellent electrochemical characters and high sensitivity toward neurotransmitter dopamine. The modified electrode was also quite stable and had good reproducibility, which might have application in the electrochemical analysis.

摘要

通过一种简便的水热法,在不使用表面活性剂或模板的情况下合成了大规模、高纯度且均匀的α-MoO₃纳米带。所制备的α-MoO₃纳米带长度可达数微米,宽度为100nm,厚度为15 - 20nm,并沿[001]方向生长。所获得的纳米带在光学性质上表现出量子尺寸效应,与块状MoO₃的值相比,其带隙发生蓝移且呈现直接跃迁。这些纳米带在可见光下对罗丹明B水溶液的光降解反应中还表现出优异的光催化能力。此外,所制备的α-MoO₃材料呈现出线性电流 - 电压(I - V)特性和出色的光响应。当光源打开和关闭时,在0.1V电压下电流可在高值和低值之间可逆切换。电化学测量预测,α-MoO₃/碳纤维修饰微电极将表现出优异的电化学特性以及对神经递质多巴胺的高灵敏度。修饰电极也相当稳定且具有良好的重现性,这可能在电化学分析中具有应用价值。

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