高等学校化学学报 ›› 2020, Vol. 41 ›› Issue (2): 293.doi: 10.7503/cjcu20190482

• 物理化学 • 上一篇    下一篇

流动控制沉积法制备PMMA叠层光子晶体薄膜及其光学性能研究

李杰峰,赵江红(),赵永祥()   

  1. 山西大学化学化工学院精细化学品工程中心, 太原 030006
  • 收稿日期:2019-09-10 出版日期:2020-02-10 发布日期:2019-12-19
  • 通讯作者: 赵江红,赵永祥 E-mail:zhaojianghong@sxu.edu.cn;yxzhao@sxu.edu.cn
  • 基金资助:
    国家自然科学基金资助(21776168)

Fabrication of Tandem PMMA Photonic Crystal Films by Flow-controled Deposition Method and Study of Their Optical Properties

LI Jiefeng,ZHAO Jianhong(),ZHAO Yongxiang()   

  1. Fine Chemical Engineering Center, College of Chemistry and Chemical Engineering, Shanxi University, Taiyuan 030006, China
  • Received:2019-09-10 Online:2020-02-10 Published:2019-12-19
  • Contact: Jianhong ZHAO,Yongxiang ZHAO E-mail:zhaojianghong@sxu.edu.cn;yxzhao@sxu.edu.cn
  • Supported by:
    ? Supported by the National Natural Science Foundation of China(21776168)

摘要:

采用流动控制沉积法, 通过调控泵速和聚甲基丙烯酸甲酯(PMMA)胶体微球溶液的浓度, 制备出微球排列高度有序且薄膜紧密附着于基底的高质量光子晶体薄膜. 获得了制备高质量PMMA光子晶体薄膜的组装条件范围, 发现在该条件范围内, 当泵速或胶体微球溶液浓度一定时, PMMA光子晶体薄膜的厚度随胶体微球溶液浓度的增加或泵速的降低而增加. 研究了组装条件对PMMA光子晶体薄膜光学性能的影响, 发现光子禁带位置随光子晶体薄膜厚度增加或减少而红移或蓝移. 在此基础上, 控制组装条件得到了不同尺寸微球堆叠而成的叠层光子晶体薄膜, 并研究了其光学性能的变化规律. 结果显示, 叠层光子晶体薄膜的光子禁带峰为各层叠层光子晶体禁带峰的简单叠加, 且峰强度受光入射角方向影响.

关键词: 流动控制沉积法, 泵速, 胶体微球溶液, 叠层光子晶体薄膜

Abstract:

Finely organized mono-layer polymethyl methacrylate(PMMA)photonic crystal films were assembled by a flow-controlled deposition method through adjusting the concentration of PMMA colloidal microspheres and the velocity of pump. An optimized assembling condition scope was obtained for the preparation of high qulity PMMA photonic crystals. It was found that the thickness of photonic crystal film increases with the increasing of the concentration of colloidal microspheres or decreasing of the velocity of pump. The optical property of PMMA photonic crystal films was investigated and it was found that the photonic band gap red-shifted/blue-shifted with the increasing/decreasing of the thickness of photonic crystal films. On the basis, tandem photonic crystal films were assembled by using PMMA microspheres with different sizes. The optical properties of tandem photonic crystal films show simple superposition of the elemental photonic crystal layers without any synergistic effect. These would pave the way for further exploring the UV-Vis-Infrared light harvesting rainbow tandem photonic crystal films and thereof the development of solar light driven photocatalysts.

Key words: Flow-controlled deposition method, Velocity of pump, Colloidal microsphere solution, Tandem photonic crystal film

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