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Density functional study on chirospectra of hydrogen-bonded systems X-(H2O)3(X=F,Cl,Br,I)
引用本文:莽朝永,李珍贵,吴克琛.Density functional study on chirospectra of hydrogen-bonded systems X-(H2O)3(X=F,Cl,Br,I)[J].中国物理 B,2010,19(4):43601-043601.
作者姓名:莽朝永  李珍贵  吴克琛
作者单位:College of Life Science and Chemistry, Dali University, Dali 671000, China;Institute of Eastern-Himalaya Biodiversity Research, Dali University, Dali 671000, China;College of Life Science and Chemistry, Dali University, Dali 671000, China;State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, China
基金项目:Project supported by the Scientific Foundation of Education Department of Yunnan Province of China (Grant No.~07Z11621), the Innovation Foundation for New Researchers in Dali University (Grant No. KY421040), and the National Natural Science Foundation of
摘    要:This paper calculates the molecular structures,infrared,Raman,circular dichroism spectra and optical rotatory powers of some hydrogen-bonded supramolecular systems as a cyclic water trimer,(H2O)3 and its pyramidal halide complexes,X-(H2O)3(X = F,Cl,Br,I) with the gradient-corrected density functional theory method at the B3LYP/6-311++G(2d,2p) and B3LYP/Aug-cc-pVTZ levels.It finds that the complexation of halide anions with the water trimer can efficiently modulate the chirally optical behaviors.The calculated vibrational circular dichroism spectrum illuminates that the vibrational rotational strength of S(+)-(H2O)3 mostly originates from the O-H rocking modes,whereas chirality of S(-)-X-(H2O)3(X = F,Cl,Br,I) has its important origin in the O-H stretching modes.The calculated optical rotatory power demonstrates that S(+)-(H2O)3 and S(+)-F(H2O)3 are positively chiral,whereas S(-)-X-(H2O)3(X = Cl,Br,I) are negatively chiral.With the polarizable continuum model,calculated bulk solvent effect in the solvents water and carbontetrachloride and argon shows that the positive chirality of S(+)-(H2O)3 is enhanced and the negative chirality of S(-)-X-(H2O)3(X = Cl,Br,I) and the positive chirality of S(+)-F(H2O)3 are reduced with an augmentation of the solvent dielectric constant.

关 键 词:water  cluster  hydrogen-bond  vibrational  circular  dichroism  infrared  spectra  density  functional  theory
收稿时间:3/3/2009 12:00:00 AM
修稿时间:6/1/2009 12:00:00 AM

Density functional study on chirospectra of hydrogen-bonded systems X-(H2O) 3 (X = F,Cl,Br,I)
Mang Chao-Yong,Li Zhen-Gui and Wu Ke-Chen.Density functional study on chirospectra of hydrogen-bonded systems X-(H2O) 3 (X = F,Cl,Br,I)[J].Chinese Physics B,2010,19(4):43601-043601.
Authors:Mang Chao-Yong  Li Zhen-Gui and Wu Ke-Chen
Affiliation:College of Life Science and Chemistry, Dali University, Dali 671000, China; College of Life Science and Chemistry, Dali University, Dali 671000, China;Institute of Eastern-Himalaya Biodiversity Research, Dali University, Dali 671000, China; State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350002, China
Abstract:This paper calculates the molecular structures, infrared, Raman, circular dichroism spectra and optical rotatory powers of some hydrogen-bonded supramolecular systems as a cyclic water trimer, (H2O)3 and its pyramidal halide complexes, $X^-$(H2O)3 ($X$ = F, Cl, Br, I) with the gradient-corrected density functional theory method at the B3LYP/6--311++G(2d,2p) and B3LYP/Aug--cc--pVTZ levels. It finds that the complexation of halide anions with the water trimer can efficiently modulate the chirally optical behaviors. The calculated vibrational circular dichroism spectrum illuminates that the vibrational rotational strength of S(+)--(H2O)3 mostly originates from the O--H rocking modes, whereas chirality of S(--)--$X^-$(H2O)water cluster, hydrogen-bond, vibrational circular dichroism, infrared spectra, density functional theoryProject supported by the Scientific Foundation of Education Department of Yunnan Province of China (Grant No.~07Z11621), the Innovation Foundation for New Researchers in Dali University (Grant No. KY421040), and the National Natural Science Foundation of3640, 7115M3/3/2009 12:00:00 AM6/1/2009 12:00:00 AMThis paper calculates the molecular structures, infrared, Raman, circular dichroism spectra and optical rotatory powers of some hydrogen-bonded supramolecular systems as a cyclic water trimer, (H2O)3 and its pyramidal halide complexes, $X^-$(H2O)3 ($X$ = F, Cl, Br, I) with the gradient-corrected density functional theory method at the B3LYP/6--311++G(2d,2p) and B3LYP/Aug--cc--pVTZ levels. It finds that the complexation of halide anions with the water trimer can efficiently modulate the chirally optical behaviors. The calculated vibrational circular dichroism spectrum illuminates that the vibrational rotational strength of S(+)--(H2O)3 mostly originates from the O--H rocking modes, whereas chirality of S(--)--$X^-$(H2O)water cluster, hydrogen-bond, vibrational circular dichroism, infrared spectra, density functional theoryProject supported by the Scientific Foundation of Education Department of Yunnan Province of China (Grant No.~07Z11621), the Innovation Foundation for New Researchers in Dali University (Grant No. KY421040), and the National Natural Science Foundation of3640, 7115M3/3/2009 12:00:00 AM6/1/2009 12:00:00 AMThis paper calculates the molecular structures, infrared, Raman, circular dichroism spectra and optical rotatory powers of some hydrogen-bonded supramolecular systems as a cyclic water trimer, (H2O)3 and its pyramidal halide complexes, $X^-$(H2O)3 ($X$ = F, Cl, Br, I) with the gradient-corrected density functional theory method at the B3LYP/6--311++G(2d,2p) and B3LYP/Aug--cc--pVTZ levels. It finds that the complexation of halide anions with the water trimer can efficiently modulate the chirally optical behaviors. The calculated vibrational circular dichroism spectrum illuminates that the vibrational rotational strength of S(+)--(H2O)3 mostly originates from the O--H rocking modes, whereas chirality of S(--)--$X^-$(H2O)water cluster, hydrogen-bond, vibrational circular dichroism, infrared spectra, density functional theoryProject supported by the Scientific Foundation of Education Department of Yunnan Province of China (Grant No.~07Z11621), the Innovation Foundation for New Researchers in Dali University (Grant No. KY421040), and the National Natural Science Foundation of3640, 7115M3/3/2009 12:00:00 AM6/1/2009 12:00:00 AMThis paper calculates the molecular structures, infrared, Raman, circular dichroism spectra and optical rotatory powers of some hydrogen-bonded supramolecular systems as a cyclic water trimer, (H$_{2}$O)$_{3}$ and its pyramidal halide complexes, $X^-$(H$_{2}$O)$_{3}$ ($X$ = F, Cl, Br, I) with the gradient-corrected density functional theory method at the B3LYP/6--311++G(2d,2p) and B3LYP/Aug--cc--pVTZ levels. It finds that the complexation of halide anions with the water trimer can efficiently modulate the chirally optical behaviors. The calculated vibrational circular dichroism spectrum illuminates that the vibrational rotational strength of S(+)--(H$_{2}$O)$_{3}$ mostly originates from the O--H rocking modes, whereas chirality of S(--)--$X^-$(H$_{2}$O)$_{3 }$ ($X$ = F, Cl, Br, I) has its important origin in the O--H stretching modes. The calculated optical rotatory power demonstrates that S(+)--(H$_{2}$O)$_{3}$ and S(+)--F$^-$(H$_{2}$O)$_{3 }$ are positively chiral, whereas S(--)--$X^-$(H$_{2}$O)$_{3 }$ ($X$ = Cl, Br, I) are negatively chiral. With the polarizable continuum model, calculated bulk solvent effect in the solvents water and carbontetrachloride and argon shows that the positive chirality of S(+)--(H$_{2}$O)$_{3}$ is enhanced and the negative chirality of S(--)--$X^-$(H$_{2}$O)$_{3 }$ ($X$ = Cl, Br, I) and the positive chirality of S(+)--F$^-$(H$_{2}$O)$_{3}$ are reduced with an augmentation of the solvent dielectric constant.
Keywords:water cluster  hydrogen-bond  vibrational circular dichroism  infrared spectra  density functional theory
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