期刊文献+

硫化银纳米晶的γ辐射制备 被引量:8

γ-Irradiation Route to Prepare Silver Sulfide Nanocrystals
下载PDF
导出
摘要 Silver sulfide nanocrystals were successfully prepared by γ irradiation in water and ethanol systems, respectively, at an ambient pressure and room temperature. Sodium thiosulfate, thiourea and carbon disulfide were employed as the sulfur ion source. The products were characterized by some means including X ray powder diffraction(XRD) , transmission electron microscopy(TEM) and X ray photoelectron energy spectrum(XPS). The result of the experiments indicated that the kind of the solvent and the sulfur ion source had influence on the size of silver sulfide nanoparticles. An interesting phenomenon was found in the TEM image of sampleⅡ: several long rods existed in the product and a tubular structure could be seen in one of these rods. The formation of this kind of special structure could be relevant to the coordination between thiourea and silver in water system. Silver sulfide nanocrystals were successfully prepared by γ irradiation in water and ethanol systems, respectively, at an ambient pressure and room temperature. Sodium thiosulfate, thiourea and carbon disulfide were employed as the sulfur ion source. The products were characterized by some means including X ray powder diffraction(XRD) , transmission electron microscopy(TEM) and X ray photoelectron energy spectrum(XPS). The result of the experiments indicated that the kind of the solvent and the sulfur ion source had influence on the size of silver sulfide nanoparticles. An interesting phenomenon was found in the TEM image of sampleⅡ: several long rods existed in the product and a tubular structure could be seen in one of these rods. The formation of this kind of special structure could be relevant to the coordination between thiourea and silver in water system.
出处 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2002年第2期176-178,共3页 Chemical Journal of Chinese Universities
基金 中国科学技术大学青年基金资助
关键词 硫化银 纳米晶 γ射线辐射 X射线粉末衍射 透射电镜 制备 纳米材料 Silver sulfide Nanocrystals γ Irradiation XRD TEM
  • 相关文献

参考文献8

  • 1[1]ZHU Ying-Jie, Doctoral Thesis, University of Science and Technology of China (in Chinese)[D], 1994:75-97
  • 2[2]Marignier J.L.,Belloni J.,Delcourt M.O.et al..Nature[J], 1985, 317:344-346
  • 3[3]Henglein A.,Ershov B.G.,Malow M..J.Phys.Chem.[J], 1995, 99:14 129-14 134
  • 4[4]LIU Yun-Ping, QIAN Yi-Tai, ZHANG Man-Wei et al..Mater.Letts.[J], 1996, 26:81-83
  • 5[5]ZHU Ying-Jie, QIAN Yi-Tai, ZHANG Man-Wei et al..Mater.Res.Bull.[J], 1994, 29:377-379
  • 6[6]YIN Ya-Dong, XU Xiang-Ling, XIA Chuan-Jun et al..Chem.Commun.[J], 1998:941-942
  • 7[7]YIN Ya-Dong, XU Xiang-Ling, GE Xue-Wu et al..Chem.Commun.[J], 1998:1 641-1 642
  • 8[8]YANG Jian, YU Shu-Hong, HAN Zhao-Hui et al..J.Solid State Chem.[J], 1999, 146:387-389

同被引文献100

引证文献8

二级引证文献35

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部