[1] 刘志宏,刘智勇,李启厚,等. 喷雾热分解法制备超细银粉及其形貌控制[J]. 中国有色金属学报,2007,17(1):149-155.
[2] 郭学益,焦翠燕,邓多,等. 硝酸银溶液性质对超细银粉形貌与粒径的影响[J]. 粉末冶金材料科学与工程,2013,18(6): 912-919.
[3] 甘卫平, 甘梅, 刘妍. 高能球磨对片状银粉的改性研究[J]. 材料导报,2007,21(增刊l): 325-327.
[4] 甘卫平, 张金玲, 张超, 等. 化学还原制备太阳能电池正极浆料用超细银粉[J]. 粉末冶金材料科学与工程,2009,14(6): 412-416.
[5] 谢明,刘建良,邓忠民,等. 快速凝固制造贵金属微细粉末[J]. 贵金属,2000,21(3): 12-17.
[6] Li R, Kim D J, Yu K, et al. Study of fine silver powder from AgOH slurry by hydrothermal techniques[J]. Journal of Materials Processing Technology, 2003, 137: 55-59.
[7] 魏智强,马军,冯旺军,等. 等离子体制备银纳米粉末的研究[J]. 贵金属,2004,25(3): 29-32.
[8] Zhang J L, Han B X, Liu M H, et al. Ultrasonication-induced formation of silver nanofibers in reverse micelles and small-angle X-ray scattering studies[J]. Journal of Plysical Chemistry B, 2003(107): 3679-3683.
[9] Nersisyan H H, Lee J H, Son H T, et al. A new and effective chemical reduction method for preparation of nanosized silver powder and colloid dispersion [J]. Materials Research Bulletin, 2003, 38: 949-956.
[10] 陈建波,李启厚,李玉虎,等. 以丙三醇为还原剂的沉淀转化法制备超细银粉[J]. 粉末冶金材料科学与工程,2013,18(6): 874-881.
[11] Chen D L, Gao L. Large-scale growth and end-to-end assembly of silver nanorods by PVP-directed polyol process[J]. Journal of Crystal Growth, 2004, 264: 216-222.
[12] Zhang J J, Liu X H, Zhao X N, et al. Preparation of silver nanorods by electrochemical methods[J]. Materials Letters, 2001(49): 91-101.
[13] Zou K, Zhang X H, Duan X F, et al. Seed-mediated synthesis of silver nanostructures and polymer/silver nanocables by UV irradiation[J]. Journal of Crystal Growth, 2004, 273: 285-291.
[14] Deivaraj T C, Lala N L, Lee J Y. Solvent-induced shape evolution of PVP protected spherical silver nanoparticles into triangular nanoplates and nanorods[J]. Journal of Colloid and Interface Science, 2005, 289: 402-409.
[15] 张健,吴贤,李程,等. 水合联氨还原制备超细银粉[J]. 稀有金属材料与工程,2007,36(3): 399-403.
[16] 郭学益,易宇,田庆华. 溶液雾化氧化法制备四氧化三钴粉末[J]. 北京科技大学学报,2012,34(3): 322-328.
[17] 郭学益,郭秋松,冯庆明,等. 溶液雾化氧化法制备超细Co3O4粒子及其性能表征[J]. 中南大学学报(自然科学版), 2010, 41(1): 60-66.
[18] 郭秋松,郭学益,田庆华. 溶液雾化焙烧法制备氧化亚镍超细粉体[J]. 材料科学与工艺,2011,19(2): 47?51.
[19] Janackvic D J, Jokanovic V, Kostic-Gvozdenovic L J,et al. Synthesis of mullite nanostructured spherical powder by ultrasonic spray pyrolysis[J]. Nanostructured Material,1998, 10(3): 341-348.
[20] 赵辉,宋坚利,曾爱军,等. 喷雾液动态表面张力与雾滴粒径关系[J]. 农业机械学报,2009,40(增刊1):74-79.
[21] 张平民. 工科大学化学[M]. 长沙:湖南教育出版社,2002.
[22] 蔡智慧,周伟,曾军,等. 烧结工艺对SiC-Y2O3-Al2O3 液相烧结的影响[J]. 厦门大学学报(自然科学版),2006,45(4):525-529.
[23] 吴希桃. 喷雾热分解法制备Ni-BaTiO3复合粉的研究[D]. 长沙:中南大学,2010.
[24] Yang Z, Liu Q H, Yang L. The effects of addition of citric acid on the morphologies of ZnO nanorods[J]. Materials Research Bulletin, 2007, 42(2):221-227.
[1]易 宇,石 靖,郭学益.工艺条件对硝酸银溶液雾化热分解制备超细银粉的影响[J].有色金属科学与工程,2016,(05预):395.
YI Yu,SHI Jing,GUO Xueyi.Effect of processing parameters on ultrafine silver particles prepared by spray- pyrolysis of AgNO3 solution[J].,2016,(03):395.