Progress in application and preparation of silver nanowires

Silver nanowires have attracted wide research attention for their excellent optical, electrical and chemical properties. Many researches were performed toward syn- thesizing and application of silver nanowires. The appli- cation of silver nanowires such as transparent conductive film electrode, cond...

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Published inRare metals Vol. 35; no. 4; pp. 289 - 298
Main Authors Xiang, Xiong-Zhi, Gong, Wen-Ya, Kuang, Ming-Sheng, Wang, Lei
Format Journal Article
LanguageEnglish
Published Beijing Nonferrous Metals Society of China 01.04.2016
Springer Nature B.V
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Summary:Silver nanowires have attracted wide research attention for their excellent optical, electrical and chemical properties. Many researches were performed toward syn- thesizing and application of silver nanowires. The appli- cation of silver nanowires such as transparent conductive film electrode, conductive silver adhesive and nanowelding technology was introduced herein. Principles and charac- teristics of different synthesizing methods of silver nano- wires were reviewed in this paper, including template method, liquid polyol method, self-assembly method, ultrasonic reduction method and wet chemical method. The liquid polyol method was the most available one to achieve efficient large-scale production.
Bibliography:Silver nanowires; Applications; Synthesizingtechnologies
Silver nanowires have attracted wide research attention for their excellent optical, electrical and chemical properties. Many researches were performed toward syn- thesizing and application of silver nanowires. The appli- cation of silver nanowires such as transparent conductive film electrode, conductive silver adhesive and nanowelding technology was introduced herein. Principles and charac- teristics of different synthesizing methods of silver nano- wires were reviewed in this paper, including template method, liquid polyol method, self-assembly method, ultrasonic reduction method and wet chemical method. The liquid polyol method was the most available one to achieve efficient large-scale production.
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ISSN:1001-0521
1867-7185
DOI:10.1007/s12598-016-0695-6