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粒径可控高振实密度球银的制备工艺研究 被引量:7

Study on Preparation of Size-Controllable Spherical Ag Powders with High Tap Density
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摘要 以硝酸银为原料,对苯二酚(C6H4(OH)2)为还原剂,链烷醇胺A为分散剂,用液相化学还原法制备高振实密度超细银粉。用激光粒度分布仪测试银粉的粒度分布与平均粒径,用扫描电子显微镜(SEM)和透射电子显微镜(TEM)分析银粉的形貌、粒径和团聚状态,用多晶X射线衍射(XRD)仪检测粉体的晶相。结果表明:通过调节硝酸银的浓度、硝酸银与还原剂的配比以及分散剂的用量等,可以实现对所制备球银粒径的控制;制备的超细银粉为面心立方晶体结构,呈规则球形,振实密度可达4.0g/cm3。 The ultrafine Ag powders with relatively high tap density were prepared by a chemical reduction method using AgNO3 as raw material.Hydroquinone and chain triacontanol amine were chosen as reductant and dispersant agent,respectively.The laser fineness gage was used to investigate the grain size distribution and the average diameter of Ag powders.The morphology,grain size and agglomerating state of Ag powders was examined by SEM and TEM.The phase composition of Ag powders was characterized by XRD.The results show that the grain size of Ag powders can be controlled by adjusting the concentration of AgNO3,the ratio of AgNO3 to reductant and dispersant agent dosage.The Ag powder obtained is of face-centered cubic crystal structure with quasi-orbicular morphology.The average tap density of the silver powders is up to 4.0 g/cm3.
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2011年第8期1492-1495,共4页 Rare Metal Materials and Engineering
基金 国家46批博士后基金(20090461406) 宁波市自然科学基金(2009A610040)
关键词 超细粉体 化学还原 振实密度 silver ultrafine powder chemical reduction tap density
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  • 1赵德强,马立斌,杨君,张春雷.银粉及电子浆料产品的现状及趋势[J].电子元件与材料,2005,24(6):54-56. 被引量:60
  • 2Abu Bakar N, Ismail J, Abu Bakar M. Mater Chem Phys[J], 2007, 104:276.
  • 3YaoQingmin(姚卿敏) ZhangCaiyun(张彩云).电子工艺技术,2005,:106-106.
  • 4Gautam G, Tripathy P, Ram S. J Mater Sci[J], 2006, 41:3007.
  • 5何发泉,李勇军.银粉的用途和制备[J].中国粉体技术,2001,7(3):45-47. 被引量:24
  • 6赵斌,马海燕,张宗涛,胡黎明.银超细粉末的制备[J].华东理工大学学报(自然科学版),1996,22(2):221-226. 被引量:11
  • 7Francine Alves da Costa, Angelus Giuseppe Pereira da Silva, Francisco Ambrozio Filho et al. Powder Technology[J], 2008, 188(1): 30.
  • 8Shi Xiaoliang, Wang Sheng, Duan Xinglong. Materials Chemistry and Physics [J], 2008, 112(3): 1110.
  • 9Gautam G, Singh P, Ram S. Synthetic Metals[J], 2007, 157(1): 5.
  • 10ZhangJian(张健) WuXian(吴贤) ZhangHanliang(张晗亮).功能材料,2007,:662-662.

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