高等学校化学学报 ›› 2018, Vol. 39 ›› Issue (8): 1617.doi: 10.7503/cjcu20180301

• 研究论文: 无机化学 • 上一篇    下一篇

箭头形金纳米锥的湿法制备及性能研究

吴丹, 李曼, 钟瑶, 安奎生, 陈艳伟()   

  1. 东北师范大学物理学院, 紫外光发射材料与技术教育部重点实验室,物理学国家级实验教学示范中心, 长春 130024
  • 收稿日期:2018-04-17 出版日期:2018-08-10 发布日期:2018-06-04
  • 作者简介:联系人简介: 陈艳伟, 女, 博士, 副教授, 主要从事纳米材料及其生物应用研究. E-mail: yanweichen@nenu.edu.cn
  • 基金资助:
    国家自然科学基金(批准号: 11774048)资助.

Property of Au Nanoshuttles with Arrow-head Prepared via Wet Chemical Synthetic Method

WU Dan, LI Man, ZHONG Yao, AN Kuisheng, CHEN Yanwei*()   

  1. Key Laboratory of UV-Emitting Materials and Technology of Ministry of Education,National Demonstration Center for Experimental Physics Education,School of Physics, Northeast Normal University, Changchun 130024, China
  • Received:2018-04-17 Online:2018-08-10 Published:2018-06-04
  • Contact: CHEN Yanwei E-mail:yanweichen@nenu.edu.cn
  • Supported by:
    † Supported by the National Natural Science Foundation of China(No. 11774048).

摘要:

采用湿化学合成法制备了箭头形金纳米锥材料, 并研究了合成过程中生长溶液的组成对金纳米材料生长的影响. 利用透射电子显微镜、 吸收光谱等手段对产物的晶体结构和光学性质进行研究, 讨论了材料的生长机理. 由于各向异性的箭头形金纳米锥具有良好的表面等离子体共振光学特性和更高的等离子体共振强度, 在表面局域电场增强及光热转化等应用方面比其它形貌的金属材料具有更强的优势. 与金纳米棒相比, 箭头形金纳米锥具有较好的SERS增强性质和光热转换效率. 文中还对材料的尖端形貌对纳米粒子边缘局域电场及光热性能的影响进行了讨论.

关键词: 金纳米锥, 表面等离子体共振, 光学性质, 光热转换效率

Abstract:

Au nanoshuttles(Au NSs) with arrow-head were synthesized via wet chemical method by adjusting the concentration of chemical precursors in the solution. The crystal structure and optical properties of Au nanoshuttles were researched by different characterization methods including transmission electron microscopy, UV-Vis-NIR absorption spectra and SERS spectra, etc. At the same time, the growth mechanism of Au nanoshuttles was discussed. Au nanoshuttles have good photothermal properties compared with Au nanorods. The anisotropic Au nanoshuttles with arrow ends feature the local surface plasmon resonance optical properties and possess more advantages than the metal materials with other morphology when they are used in the applications about enhanced local electric field and photothermal conversion. In addition, their photothermal conversion efficiency was calculated. The effect of arrow morphology on the photothermal properties of Au nanoshuttles was disscussed.

Key words: Au nanoshuttle, Surface plasmon resonance, Optical property, Photothermal conversion efficiency

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