高级检索

反应温度、时间和搅拌速率对纳米铜粉尺寸和分散性的影响研究

Study on the Effects of Reaction Temperature, Time and Stirring Rate on the Size and Dispersion of Nano-copper Powder

  • 摘要: 本文系统研究了纳米铜粉的液相还原法制备工艺,旨在解决其粒径控制难、易团聚等问题。通过对比直接还原法(NMM)、络合还原法(CRM)与醇溶剂还原法(ARM)三种方法,系统考察了反应温度、反应时间及搅拌速率对铜粉形貌、粒径及分散性的影响。结果表明,醇溶剂法与络合法在调控粒径分布和改善分散性方面显著优于直接还原法。特别是醇溶剂法,其利用丙三醇同时作为溶剂与还原剂,凭借缓慢的还原动力学和优异的表面修饰作用,成功制备出平均粒径约为200 nm、分散性良好的球形纳米铜粉。本研究明确了三种方法的最佳工艺参数:NMM为80 °C/90 min/400 r·min-1,能够制备出粒径在300 nm左右的铜粉;CRM为90 °C/90 min/300 r·min-1,能够制备出粒径在250 nm左右的铜粉;ARM为160 °C/120 min/300 r·min-1,能够制备出粒径在200 nm左右的铜粉,为纳米铜粉的可控制备提供了工艺参考。

     

    Abstract: This paper systematically studies the liquid-phase reduction method for preparing nano-copper powder, aiming to solve the problems of difficult particle size control and easy agglomeration. By comparing three methods: direct reduction method (NMM), complex reduction method (CRM), and alcohol solvent reduction method (ARM), the effects of reaction temperature, reaction time, and stirring rate on the morphology, particle size, and dispersion of copper powder were systematically investigated. The results show that the alcohol solvent method and complex method are significantly superior to the direct reduction method in regulating particle size distribution and improving dispersion. Especially the alcohol solvent method, which uses glycerol as both the solvent and reducing agent, successfully prepares spherical nano-copper powder with an average particle size of about 200 nm and good dispersion, thanks to its slow reduction kinetics and excellent surface modification effect. This study clarifies the optimal process parameters for the three methods: NMM at 80 °C for 90 min with a stirring rate of 400 r·min-1, which can prepare copper powder with a particle size of about 300 nm; CRM at 90 °C for 90 min with a stirring rate of 300 r·min-1, which can prepare copper powder with a particle size of about 250 nm; ARM at 160 °C for 120 min with a stirring rate of 300 r·min-1, which can prepare copper powder with a particle size of about 200 nm. This provides a process reference for the controllable preparation of nano-copper powder.

     

/

返回文章
返回