An Overview of Strategic Non-Biological Approaches for The Synthesis of Cupper Nanoparticles

S. Munir, A. Gul
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引用次数: 3

Abstract

Abstract Metal Nanoparticles show specific physical and chemical properties attributed to its small size and high surface area to volume ratio. These chemical and physical properties using different strategies and conditions enhance its biological application especially in the field of medicine. Earth abundant and cheap cupper metal is the essential element in many processes and has been used as a focus element to synthesize nanoparticles by different methods using new technology, which are being broadly classified as biological methods that includes green synthesis, microorganism etc. and the non-biological synthesis which includes chemical and Physical methods. Thus, the imperative need to synthesize cupper nanomaterial that are economic and efficient is necessary. This review have briefly described the modern methods to synthesize nanoparticles particularly focusing on the non-biological methods of cupper nanoparticles. An overview of current methodologies that are used for cupper nanoparticle mainly chemical reduction using organic and inorganic solvents, Reverse micelle, microemulsion, polyol method and several physical methods such as vapor condensation, photo irradiation and plasma synthesis methods are discussed.
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铜纳米颗粒合成的非生物策略方法综述
摘要金属纳米颗粒具有体积小、比表面积大等特点,具有特殊的物理化学性质。这些化学和物理性质在不同的策略和条件下增强了其生物学应用,特别是在医学领域。地球上储量丰富且价格低廉的铜金属是许多过程中必不可少的元素,并作为焦点元素利用新技术通过不同的方法合成纳米颗粒,这些新技术大致分为包括绿色合成、微生物合成等在内的生物方法和包括化学和物理方法在内的非生物合成。因此,迫切需要合成经济高效的铜纳米材料。本文简要介绍了纳米颗粒的合成方法,重点介绍了铜纳米颗粒的非生物合成方法。综述了目前制备纳米铜的方法,主要包括有机和无机溶剂化学还原法、反胶束法、微乳液法、多元醇法以及蒸汽冷凝法、光辐照法和等离子体合成法等几种物理方法。
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