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首页> 外文期刊>Journal of nanomaterials >Recent trends in the microwave-assisted synthesis of metal oxide nanoparticles supported on carbon nanotubes and their applications
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Recent trends in the microwave-assisted synthesis of metal oxide nanoparticles supported on carbon nanotubes and their applications

机译:微波辅助合成碳纳米管负载金属氧化物纳米粒子的最新趋势及其应用

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The study of coating carbon nanotubes with metal/oxides nanoparticles is now becoming a promising and challenging area of research. To optimize the use of carbon nanotubes in various applications, it is necessary to attach functional groups or other nanostructures to their surface. The combination of the distinctive properties of carbon nanotubes and metal/oxides is expected to be applied in field emission displays, nanoelectronic devices, novel catalysts, and polymer or ceramic reinforcement. The synthesis of these composites is still largely based on conventional techniques, such as wet impregnation followed by chemical reduction of the metal nanoparticle precursors. These techniques based on thermal heating can be time consuming and often lack control of particle size and morphology. Hence, there is interest in microwave technology recently, where using microwaves represents an alternative way of power input into chemical reactions through dielectric heating. This paper covers the synthesis and applications of carbon-nanotube-coated metal/oxides nanoparticles prepared by a microwave-assisted method. The reviewed studies show that the microwave-assisted synthesis of the composites allows processes to be completed within a shorter reaction time with uniform and well-dispersed nanoparticle formation.
机译:现在,用金属/氧化物纳米颗粒涂覆碳纳米管的研究正成为一个充满希望和挑战性的研究领域。为了优化碳纳米管在各种应用中的使用,必须将官能团或其他纳米结构连接到它们的表面。碳纳米管和金属/氧化物的独特特性的组合有望应用于场发射显示器,纳米电子器件,新型催化剂以及聚合物或陶瓷增强材料。这些复合材料的合成仍主要基于常规技术,例如湿法浸渍,然后化学还原金属纳米颗粒前体。这些基于热加热的技术可能很耗时,并且常常缺乏对粒度和形态的控制。因此,近来对微波技术产生了兴趣,其中使用微波代表通过介电加热将功率输入到化学反应中的另一种方式。本文涵盖了通过微波辅助方法制备的碳纳米管包覆的金属/氧化物纳米粒子的合成与应用。审查的研究表明,复合材料的微波辅助合成可以在较短的反应时间内完成过程,并形成均匀且分散良好的纳米颗粒。

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