材料科学
镍
烧结
陶瓷
碳酸钠
陶瓷电容器
纳米颗粒
冶金
电容器
碳酸盐
相(物质)
化学工程
钠
纳米技术
有机化学
化学
电压
工程类
物理
量子力学
作者
Xin Liu,Yan Dong,Yuting Ye,Wang Xu,Cuié Wen,Qiyue Shao
标识
DOI:10.1002/adem.202501316
摘要
Multilayer ceramic capacitors (MLCCs) are widely used passive components in modern electronics and have continuously evolved toward thinner dielectric layers, greater miniaturization, and higher capacitance. The Ni powder used in MLCCs must exhibit high crystallinity, small particle size, and excellent dispersibility. Achieving high crystallinity in Ni nanopowders requires preparation temperatures above 600 °C, but preventing sintering and grain growth at such temperatures remains a significant challenge. In this study, a salt containing composite solution precipitation method to coprecipitate Na 2 CO 3 and a nickel precursor is applied, achieving uniform nanometer scale isolation of the precursor by Na 2 CO 3 and effectively inhibiting nanoparticle sintering during high‐temperature treatment. This approach produced Ni nanoparticles with a uniform diameter of 35 nm, enhanced dispersibility, and superior oxidation resistance (onset oxidation temperature of 330 °C). Moreover, the method is cost‐effective and readily scalable for large‐scale production.
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