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首页> 外文期刊>ACS nano >Ultralong silver trimolybdate nanowires: Synthesis, phase transformation, stability, and their photocatalytic, optical, and electrical properties
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Ultralong silver trimolybdate nanowires: Synthesis, phase transformation, stability, and their photocatalytic, optical, and electrical properties

机译:超长偏钼酸银纳米线:合成,相变,稳定性及其光催化,光学和电学性质

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摘要

Ultralong orthorhombic silver trimolybdate nanowires (NWs) can be synthesized by a simple hydrothermal process without using any structure directing agent. Their phase transformation and stability to thermal and modeling sunlight from a Xe lamp have been systematically studied. Well-dispersed Ag nanoparticles can in situ form on the backbone of the nanowires by photoirradiation, and their photocatalytic and optical properties have been investigated. The investigations on photocatalytic, photoluminescent, and surface-enhanced Raman scattering (SERS) of the as-synthesized nanowires indicate that these nanowires loaded with Ag nanoparticles by photoirradiation can be a new kind of photocatalytic and luminescent material and potentially can be used as an efficient SERS substrate. The electrical conductivity of an individual nanowire exhibits almost nonlinear and symmetric current/voltage (I/V) characteristics for bias voltages in the range of -5 to 5 V. Ohmic mechanism, Schottky, and the Poole-Frenkel emission play an important part, respectively, in low, medium, and high electrical fields.
机译:可以通过简单的水热工艺合成超长正交晶的偏钼酸银纳米线(NWs),而无需使用任何结构导向剂。已经系统地研究了它们的相变以及对氙灯产生的热和模拟太阳光的稳定性。可以通过光辐照在纳米线的骨架上原位形成分散良好的Ag纳米粒子,并对其光催化和光学性质进行了研究。对合成纳米线的光催化,光致发光和表面增强拉曼散射(SERS)的研究表明,这些通过光辐照负载有Ag纳米粒子的纳米线可以是一种新型的光催化和发光材料,并有可能被用作一种高效的材料。 SERS底物。对于-5至5 V范围内的偏置电压,单个纳米线的电导率具有几乎非线性和对称的电流/电压(I / V)特性。欧姆机制,肖特基和Poole-Frenkel发射起着重要的作用,分别在低,中和高电场中。

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