Synthesis of Nanowire-Shaped Silver by Polyol Process of Sodium Chloride

IF 0.7 4区 管理学 Q3 COMMUNICATION
N. Nghia, Nguyen Ngoc Khoa Truong, N. M. Thong, N. P. Hung
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引用次数: 44

Abstract

Nanowire-shaped silver have been synthesized by the polyol process in ethylene glycol as a reductant, poly- vinylpyrrolidone (PVP) as a stabilizer, using a microwave technique. The products were characterized by transmission electron microscopy (TEM). The presence of sodium chloride in the polyol reduction of silver nitrate facilitated the pro- duction of silver nanowires. These wires were formed quickly (in approximately 3 minutes microwave heating). It was found that morphologies and sizes of silver nanostructures depended strongly on such experimental parameters as concentrations of PVP, NaCl, AgNO3, and heating time. The chloride ion was necessary to synthesize nanowire-shaped silver, and the sodium chloride likely controlled the rate of silver(I) reduction and initial seed formation. Among all the nanowire materials, the synthesis of silver nanowires has been and continues to be an area of active research because of their wide applications in catalysts, scanning probes, and various kinds of electronic and photonic nanodevices. Microwave-polyol method is a promising route for rapid preparation of metallic nanomate- rials(1). When microwave was irradiated into the mixture of AgNO3/NaCl/PVP in ethylene glycol solution, anisotropic Ag nanarods and nanowires were produced preferentially. In this work, we examined the dependence of shape, size of silver nanostructures on such experimental parameters as concentrations of PVP, NaCl, AgNO3, and heating time. The changes of shapes and sizes of silver nanostructures were observed by using transmission electron microscope (TEM). Possible formation mechanism of nanorods, nanowires, spherical and cubic nanoparticles under microwave (MW) irradiation in the presence of sodium chloride was discussed.
氯化钠多元醇法合成纳米线状银
以乙二醇为还原剂,聚乙烯吡咯烷酮(PVP)为稳定剂,利用微波技术,采用多元醇法制备了纳米线状银。用透射电镜(TEM)对产物进行了表征。硝酸银多元醇还原过程中氯化钠的存在有利于银纳米线的制备。这些金属丝形成得很快(大约3分钟的微波加热)。结果表明,银纳米结构的形貌和尺寸与PVP、NaCl、AgNO3浓度和加热时间等实验参数密切相关。氯离子是合成纳米线状银所必需的,氯化钠可能控制了银(I)的还原速率和初始种子的形成。在所有纳米线材料中,银纳米线的合成由于其在催化剂、扫描探针以及各种电子和光子纳米器件中的广泛应用,一直是并将继续成为一个活跃的研究领域。微波多元醇法是一种很有前途的快速制备金属纳米酸盐的方法(1)。在乙二醇溶液中,微波照射AgNO3/NaCl/PVP的混合物,优先产生各向异性的银纳米棒和纳米线。在这项工作中,我们研究了银纳米结构的形状和尺寸与PVP、NaCl、AgNO3浓度和加热时间等实验参数的关系。利用透射电子显微镜(TEM)观察了银纳米结构的形状和尺寸变化。讨论了在氯化钠存在下,微波辐照下纳米棒、纳米线、球形和立方纳米颗粒的可能形成机理。
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来源期刊
自引率
12.50%
发文量
66
期刊介绍: The world of mobile communications is not a trend, but a phenomenon. IJMC, a fully refereed journal, publishes articles that present current practice and theory of mobile communications, mobile technology, and mobile commerce applications. Topics covered include Integrated mobile marketing communications Wireless advertising/CRM Telematics, pervasive computing Incoming/outgoing wireless links Location management Diffusion, security, efficacy, interaction/integration Metric mobile business enterprises PDAs in services delivery M-/u-business models, m-/u-commerce Digital office, groupware, roomware Mobile ad hoc networking, wireless information assurance Nomadic/portable communications Cross-cultural mobile communications Teaching mobile communication applications Mobile/handheld devices in the classroom, tele-learning.
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