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A Review of Microwave Synthesis of Zinc Oxide Nanomaterials: Reactants Process Parameters and Morphologies

机译:微波合成氧化锌纳米材料的综述:反应物工艺参数和形态

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摘要

Zinc oxide (ZnO) is a multifunctional material due to its exceptional physicochemical properties and broad usefulness. The special properties resulting from the reduction of the material size from the macro scale to the nano scale has made the application of ZnO nanomaterials (ZnO NMs) more popular in numerous consumer products. In recent years, particular attention has been drawn to the development of various methods of ZnO NMs synthesis, which above all meet the requirements of the green chemistry approach. The application of the microwave heating technology when obtaining ZnO NMs enables the development of new methods of syntheses, which are characterised by, among others, the possibility to control the properties, repeatability, reproducibility, short synthesis duration, low price, purity, and fulfilment of the eco-friendly approach criterion. The dynamic development of materials engineering is the reason why it is necessary to obtain ZnO NMs with strictly defined properties. The present review aims to discuss the state of the art regarding the microwave synthesis of undoped and doped ZnO NMs. The first part of the review presents the properties of ZnO and new applications of ZnO NMs. Subsequently, the properties of microwave heating are discussed and compared with conventional heating and areas of application are presented. The final part of the paper presents reactants, parameters of processes, and the morphology of products, with a division of the microwave synthesis of ZnO NMs into three primary groups, namely hydrothermal, solvothermal, and hybrid methods.
机译:氧化锌(ZnO)由于其出色的理化特性和广泛的用途而成为一种多功能材料。材料尺寸从宏观尺度减小到纳米尺度所产生的特殊性能,使得ZnO纳米材料(ZnO NMs)的应用在众多消费产品中更加普及。近年来,人们特别关注各种ZnO NMs合成方法的开发,这些方法首先满足了绿色化学方法的要求。微波加热技术在获得ZnO NMs时的应用使开发新的合成方法成为可能,这些新方法的特点是可以控制性能,可重复性,可重复性,合成时间短,价格低,纯度和可实现性高。环保方法标准。材料工程学的动态发展是必须获得具有严格定义的特性的ZnO NM的原因。本综述旨在讨论有关未掺杂和掺杂的ZnO NMs的微波合成技术。综述的第一部分介绍了ZnO的性质和ZnO NMs的新应用。随后,讨论了微波加热的性质并将其与常规加热进行比较,并介绍了其应用领域。本文的最后一部分介绍了反应物,工艺参数和产物的形态,并将ZnO NMs的微波合成分为三个主要组,即水热法,溶剂热法和混合法。

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