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A review on the green and sustainable synthesis of silver nanoparticles and one-dimensional silver nanostructures

机译:银纳米粒子和一维银纳米结构的绿色和可持续合成综述

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摘要

The significance of silver nanostructures has been growing considerably, thanks to their ubiquitous presence in numerous applications, including but not limited to renewable energy, electronics, biosensors, wastewater treatment, medicine, and clinical equipment. The properties of silver nanostructures, such as size, size distribution, and morphology, are strongly dependent on synthesis process conditions such as the process type, equipment type, reagent type, precursor concentration, temperature, process duration, and pH. Physical and chemical methods have been among the most common methods to synthesize silver nanostructures; however, they possess substantial disadvantages and short-comings, especially compared to green synthesis methods. On the contrary, the number of green synthesis techniques has been increasing during the last decade and they have emerged as alternative routes towards facile and effective synthesis of silver nanostructures with different morphologies. In this review, we have initially outlined the most common and popular chemical and physical methodologies and reviewed their advantages and disadvantages. Green synthesis methodologies are then discussed in detail and their advantages over chemical and physical methods have been noted. Recent studies are then reviewed in detail and the effects of essential reaction parameters, such as temperature, pH, precursor, and reagent concentration, on silver nanostructure size and morphology are discussed. Also, green synthesis techniques used for the synthesis of one-dimensional (1D) silver nanostructures have been reviewed, and the potential of alternative green reagents for their synthesis has been discussed. Furthermore, current challenges regarding the green synthesis of 1D silver nanostructures and future direction are outlined. To sum up, we aim to show the real potential of green nanotechnology towards the synthesis of silver nanostructures with various morphologies (especially 1D ones) and the possibility of altering current techniques towards more environmentally friendly, more energy-efficient, less hazardous, simpler, and cheaper procedures.
机译:由于其在许多应用中的普遍存在,包括但不限于可再生能源,电子,生物传感器,废水处理,医学和临床设备,因此银纳米结构的显着性显着增加。银纳米结构的性质,例如尺寸,尺寸分布和形态,具有强烈依赖于合成过程条件,例如工艺类型,设备类型,试剂型,前体浓度,温度,工艺持续时间和pH。物理和化学方法是合成银纳米结构的最常见方法之一;然而,它们具有实质性的缺点和短暂的转化,特别是与绿色合成方法相比。相反,在过去的十年中,绿色综合技术的数量在增加,它们被出现为替代途径,并有效合成银纳米结构具有不同的形态。在这篇综述中,我们最初概述了最常见和最流行的化学和物理方法,并审查了它们的优缺点。然后详细讨论了绿色合成方法,并注意到它们对化学和物理方法的优点。然后详细审查最近的研究,并讨论了基本反应参数的影响,例如温度,pH,前体和试剂浓度,银纳米结构大小和形态。此外,已经回顾了用于合成一维(1D)银纳米结构的绿色合成技术,并讨论了它们合成的替代绿色试剂的潜力。此外,概述了关于1D银纳米结构和未来方向的绿色合成的当前挑战。总而言之,我们的目标是展示绿色纳米技术与各种形态(特别是1D)合成银纳米结构的真正潜力,以及改变电流技术更加环保,更节能,更危险,更简单的可能性,和更便宜的程序。

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