Influence of Self-assembly Conditions on Film Formation, Optical and Electrical Properties of Gold Nanoparticle Network Film

D. Yonekura, Hiroki Ushita, Y. Sakaguchi, R. Murakami
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Abstract

Gold nanoparticles were grown under various sodium citrate concentration and self-assembled gold nanoparticle films were formed on a glass substrate under various conditions to examine the effect of sodium citrate concentration on the particle size of gold nanoparticles and the effect of processing time and processing temperature on the optical properties and electrical resistivity of the self-assembled gold nanoparticle film. As a result, it was found that the ratio of tetrachloroauric (III) acid to sodium citrate is preferably 1:3 was appropriate to obtain fine gold nanoparticles. The self-assembled gold nanoparticle films showed a network structure formed by nano-wires for all assembled conditions. However the thickness or the assembled state of the gold nano-wires was sensitive to the processing temperature whereas the processing time hardly affected the properties of the nano-wires. In particular, higher processing temperature led to a break in the nano-wires and then the optical properties and electrical resistivity was degraded.
自组装条件对金纳米粒子网络薄膜形成及光电性能的影响
在不同柠檬酸钠浓度下生长金纳米颗粒,在不同条件下在玻璃基板上形成自组装金纳米颗粒膜,考察柠檬酸钠浓度对金纳米颗粒粒径的影响,以及加工时间和加工温度对自组装金纳米颗粒膜光学性能和电阻率的影响。结果表明,四氯金(III)酸与柠檬酸钠的比例优选为1:3,可获得较细的金纳米颗粒。自组装金纳米粒子薄膜在各种组装条件下均呈现由纳米线形成的网状结构。金纳米线的厚度和组装状态对加工温度敏感,而加工时间对其性能影响不大。特别是,较高的加工温度会导致纳米线断裂,从而导致光学性能和电阻率下降。
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