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氨基酸桥联手性双卟啉的二阶非线性光学性质研究

应晓1, 张新伟1, 廖世军2, 刘海洋2, 张启光3   

    1. 华南理工大学应用物理系,
    2. 应用化学系, 广州 510641;
    3. 香港科技大学化学系, 香港
  • 收稿日期:2006-01-18 修回日期:1900-01-01 出版日期:2006-12-10 发布日期:2006-12-10
  • 通讯作者: 刘海洋

Investigation on Second-order Nonlinear Optical Property of Amino Acid Bridged Chiral Porphyrin Dimmer

YING Xiao1, ZHANG Xin-Wei1, LIAO Shi-Jun2, LIU Hai-Yang2, CHANG Chi-Kwong3   

    1. Department of Applied Physics, South China University of Technology;
    2. Department of Applied Chemistry, South China University of Technology, Guangzhou 510641, China;
    3. Department of Chemistry, The Hong Kong University of Science and Technology, Hong Kong, China
  • Received:2006-01-18 Revised:1900-01-01 Online:2006-12-10 Published:2006-12-10
  • Contact: LIU Hai-Yang

摘要: 采用半经验量子化学PM3方法对系列氨基酸桥联双卟啉1, 2, 3, 4及其锌配合物进行了几何结构优化, 并用TDHF/PM3方法计算了其静态二阶非线性光学系数. 计算结果表明, L型-氨基酸桥联双卟啉及其锌配合物具有右手螺旋结构特征. 在电偶极近似下, 不同手性氨基酸侧链基团R对分子的总体二阶非线性光学系数ββHRS的影响不大, 但对二阶非线性光学系数的手性分量βxyz却有显著影响. βxyz与螺旋结构参数r2ζ/L4成正比关系, 符合手性分子二阶非线性光学响应的单电子螺旋模型理论. β张量分析表明, 此类分子表现为以八极为主、 偶极为辅的多极分子, 卟啉环与锌离子的配位有利于增加二阶非线性光学响应的偶极分量和手性分量βxyz.

关键词: 氨基酸, 手性双卟啉, 二阶非线性光学性质, TDHF/PM3

Abstract: Geometries of amino acid bridged bis-porphyrin 1,2,3,4 and their zinc(Ⅱ) complexes were optimized at semiempirical PM3 quantum chemistry level. Static second-order NLO coefficients of these bis-porphyrins were then calculated by TDHF/PM3 method. The calculation results show that all L-type amino acid bridged bis-porphyrins exhibit right-handed helix structures. Within the electric-dipole approximation, second-order NLO coefficients β of these bis-porphyrins change little with the varying of amino acid side chains. However, the second-order NLO chiral components βxyz of amino acid bridged bis-porphyrins are significantly different. The chiral component βxyz and the helix structure parameter r2ζ/L4 matches βxyzr2ζ/L4, indicating the second-order chiral NLO response of helix chiral bis-porphyrins could be well described by one-electron helical model theory. The analysis of β components indicates that these amino acid bridged bis-porphyrins are multipolar molecules with ‖βJ=3‖/‖βJ=1‖≈11—17. In comparison to free-base helix bis-porphyrin, the insertion of Zn(Ⅱ) ion favors the accretion of the second-order NLO dipolar component and chiral component βxyz of molecules.

Key words: Amino acid, Chiral bis-porphyrin, Second-order NLO, TDHF/PM3

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