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Copper Oxide Nanomaterials Prepared by Solution Methods, Some Properties, and Potential Applications: A Brief Review

机译:溶液法制备的氧化铜纳米材料,一些性质和潜在应用:简要概述

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Cupric oxide (CuO), having a narrow bandgap of 1.2 eV and a variety of chemophysical properties, is recently attractive in many fields such as energy conversion, optoelectronic devices, and catalyst. Compared with bulk material, the advanced properties of CuO nanostructures have been demonstrated; however, the fact that these materials cannot yet be produced in large scale is an obstacle to realize the potential applications of this material. In this respect, chemical methods seem to be efficient synthesis processes which yield not only large quantities but also high quality and advanced material properties. In this paper, the effect of some general factors on the morphology and properties of CuO nanomaterials prepared by solution methods will be overviewed. In terms of advanced nanostructure synthesis, microwave method in which copper hydroxide nanostructures are produced in the precursor solution and sequentially transformed by microwave into CuO may be considered as a promising method to explore in the near future. This method produces not only large quantities of nanoproducts in a short reaction time of several minutes, but also high quality materials with advanced properties. A brief review on some unique properties and applications of CuO nanostructures will be also presented.
机译:氧化铜(CuO)具有1.2 eV的窄带隙和多种化学物理性质,最近在许多领域都非常有吸引力,例如能量转换,光电器件和催化剂。与块状材料相比,CuO纳米结构具有先进的性能。然而,这些材料仍不能大规模生产这一事实阻碍了该材料潜在应用的实现。在这方面,化学方法似乎是有效的合成方法,其不仅产生大量,而且还产生高质量和先进的材料性能。本文概述了一些一般因素对溶液法制备的CuO纳米材料的形貌和性能的影响。就先进的纳米结构合成而言,微波法是在不久的将来探索的一种有前途的方法,其中在前体溶液中产生氢氧化铜纳米结构,然后通过微波将其转变为CuO。这种方法不仅可以在几分钟的短时间内产生大量的纳米产品,还可以生产出具有先进性能的高质量材料。还将简要介绍CuO纳米结构的一些独特性质和应用。

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