Facile ligand-exchange strategy to promote low-temperature nano-sintering of oleylamine-capped Ag nanoparticles

油胺 烧结 材料科学 纳米颗粒 化学工程 扫描电子显微镜 纳米- 银纳米粒子 纳米技术 分散性 微观结构 冶金 复合材料 高分子化学 工程类
作者
Liyun Li,Yu Zhang,Shiyu Xia,Zhefei Sun,Junjie Yuan,Shen Diao,Hunjun Cao,Xiaoming Chai,Qingtian Wang,Jintang Li,Zhihao Zhang
出处
期刊:Microelectronics International [Emerald (MCB UP)]
卷期号:40 (2): 132-139
标识
DOI:10.1108/mi-11-2022-0186
摘要

Purpose This study aims to develop a facile ligand-exchange strategy to promote nano-sintering of oleylamine (OAM)-capped silver nanoparticles (AgNPs). By using ligand exchange process with NH 4 OH to remove OAM from the surface of AgNP, this study reports effectively reducing the sintering temperature of AgNPs to achieve low-temperature nano-sintering. Compared with untreated AgNPs of OAM-capped, NH 4 OH-treated AgNPs possess superior sintering performance that could be applied to a fractional generator device as conductor and in favour of the fabrication of flexible circuit modules. Design/methodology/approach First, oleylamine is used as reductant to synthesize monodisperse AgNPs by a simple one-step method. Then ligand exchange is used with NH 4 OH at different treating times to remove OAM, and micro-Fourier transform infrared spectroscopy and contact angle test are applied to clear the mechanism and structure characteristics of these processes. Finally, NH 4 OH-treated AgNPs sediment sintering is used at different temperatures to test electrical resistivity and use ex situ scanning electron microscopy combined with in situ X-ray diffraction to study changes in microstructure in the whole nano-sintering process. Findings The AgNPs are always capped by organic ligands to prevent nanoparticles agglomeration. And oleylamine used as reductant could synthesize desirable size distributions of 8–32 nm with monodisperse globular shapes, but the low-temperature nano-sintering seemed not to be achieved by the oleylamine-capped AgNPs because OAM is an organic with long C-chain. The ligand exchange approach was enabled to replace the original organic ligands capped on AgNPs with organic ligands of low thermal stability which could promote nano-sintering. After ligand exchange treated AgNPs could be sintered on photo paper, polydimethylsiloxane (PDMS) and polyethylene terephthalate flexible substrates at low temperature. Originality/value In this research, the method ligand exchange is used to change the ligand of AgNPs. During ligand exchange, NH 4 OH was used to treat AgNPs. Through the treatment of NH 4 OH, the change of hydrophilic and hydrophobic properties of AgNPs was successfully realized. The sintering temperature of AgNPs can also be reduced and the properties can be improved. Finally, the applicability of the AgNPs sediment with this nano-sintering process at low temperature for obtaining conductive patterns was evaluated using PDMS as substrates.
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