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小尺寸金纳米棒的快速制备及影响因素的研究
引用本文:周佳玲,段倩倩,李朋伟,菅傲群,冀健龙,张强,桑胜波. 小尺寸金纳米棒的快速制备及影响因素的研究[J]. 分析化学, 2017, 45(10). DOI: 10.11895/j.issn.0253-3820.170357
作者姓名:周佳玲  段倩倩  李朋伟  菅傲群  冀健龙  张强  桑胜波
作者单位:太原理工大学信息工程学院 微纳系统研究中心,教育部先进传感器与智能控制系统重点实验室,太原030024
基金项目:国家自然科学基金项目 ( Nos. 51505324;61474079 ) 和山西省青年科技研究基金项目(No. 201701D221111)资助This work was supported by the National Natural Science Foundation of China,the Youth Science and Technology Research Fund of Shanxi Province
摘    要:通过研究十六烷基三甲基溴化铵、抗坏血酸、NaBH4和AgNO3的用量,以及搅拌时间、反应时间对无种子生长法制备金纳米棒的影响,筛选出了最佳制备条件,以及各成分对金纳米棒生长过程中的作用.采用可见吸收光谱和透射电镜图对不同条件下所制备出的金纳米棒进行了表征.在室温为28℃,CTAB浓度为0.1 mol/L、AgNO3浓度为96μmol/L、AA浓度为0.97 mmol/L、NaBH4浓度为1.5μmol/L,搅拌25 s等最佳条件下,只需反应6h就能够成功制备出长径比为5且形貌均匀、分散性和稳定性良好、轴宽较小的金纳米棒,且有望应用于水环境中Hg2+的检测.

关 键 词:无种子生长法  小尺寸  高长径比  金纳米棒  汞离子Ⅱ

Rapid Preparation of Micro-sized Gold Nanorods
ZHOU Jia-Ling,DUAN Qian-Qian,LI Peng-Wei,JIAN Ao-Qun,JI Jian-Long,ZHANG Qiang,SANG Sheng-Bo. Rapid Preparation of Micro-sized Gold Nanorods[J]. Chinese Journal of Analytical Chemistry, 2017, 45(10). DOI: 10.11895/j.issn.0253-3820.170357
Authors:ZHOU Jia-Ling  DUAN Qian-Qian  LI Peng-Wei  JIAN Ao-Qun  JI Jian-Long  ZHANG Qiang  SANG Sheng-Bo
Abstract:The effects of cetyltrimethylammonium bromide ( CTAB) , ascorbic acid, NaBH4 and AgNO3 , as well as the stirring time and reaction time on the preparation of gold nanorods synthesized with seedless growth method were studied. The optimum preparation conditions were obtained in the process of growth of gold nanorods. The gold nanorods prepared under different conditions were characterized by visible absorption spectroscopy and transmission electron microscopy ( TEM ) . Under the optimum conditions such as room temperature, 0. 1 mol/L CTAB, 96 μmol/L AgNO3 , 0. 97 mmol/L ascorbic acid, 1. 5 μmol/L NaBH4 and stirring for 25 s, micro-sized gold nanorods with uniform morphology, good dispersibility, small shaft width and high aspect ratio were prepared within 6 h. The gold nanorods were expected to be applied to the detection of mercury ion in water environment.
Keywords:Seedless growth method  Micro-sized  High aspect ratio  Gold nanorods  Mercury ion Ⅱ
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