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Substituent Effects on the Blue—Shifting Hydrogen Bonds between X—C≡C—CF2—H and Water
引用本文:FAN,Jian-Miao ZHANG,Ke-Chun 等.Substituent Effects on the Blue—Shifting Hydrogen Bonds between X—C≡C—CF2—H and Water[J].中国化学,2002,20(3):247-251.
作者姓名:FAN,Jian-Miao  ZHANG,Ke-Chun
作者单位:DepartmentofChemistry,UniversityofScienceandTechnologyofChina,Hefei,Ahui230026,China
基金项目:ProjectsupportedbytheNationalNaturalScienceFoundationofChina (No.2 9972 0 38)
摘    要:MP2/6-31 g(d) calculations were performed verifying the existences of blue-shifting X-C≡C-CF2-H…OH2 hydrogen bonds.Detailed analyses revealed that the interaction energy and donor-acceptor distance had good correlations with the substituent Hammett constants.However,the extent of C-H bond contraction and the blue shift of the C-H stretching vibration did not show any good correlation with the traditional substituent constants,indicating that certain more complicated mechanisms might be involved in the present systems.Nevertheless,it was found that highly electron-with-drawing susbtituents were not favorable to the C-H bond contraction,and it was suggested that the attractive interaction between water and the carbon of -CF2H probably played an important role in the blue shift.

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Substituent Effects on the Blue‐Shifting Hydrogen Bonds between X ‐ C  C ‐ CF2 ‐ H and Water
FAN,Jian-Miao ZHANG,Ke-Chun LIU,Lei LI,Xiao-Song GUO,Qing-Xiang.Substituent Effects on the Blue‐Shifting Hydrogen Bonds between X ‐ C  C ‐ CF2 ‐ H and Water[J].Chinese Journal of Chemistry,2002,20(3):247-251.
Authors:FAN  Jian-Miao ZHANG  Ke-Chun LIU  Lei LI  Xiao-Song GUO  Qing-Xiang
Institution:FAN,Jian-Miao ZHANG,Ke-Chun LIU,Lei LI,Xiao-Song GUO,Qing-XiangDepartment of Chemistry,University of Science and Technology of China,Hefei,Ahui 230026,China
Abstract:MP2/6‐31 + g (d) calculations were performed verifying the existences of blue‐shifting X ‐ C ? C ‐ CF2 ‐ H?OH2 hydrogen bonds. Detailed analyses revealed that the interaction energy and donor‐acceptor distance had good correlations with the substituent Hammett constants. However, the extent of C‐H bond contraction and the blue shift of the C‐H stretching vibration did not show any good correlation with the traditional substituent constants, indicating that certain more complicated mechanisms might be involved in the present systems. Nevertheless, it was found that highly electron‐withdrawing substituents were not favorable to the C‐H bond contraction, and it was suggested that the attractive interaction between water and the carbon of ‐ CF2H probably played an important role in the blue shift.
Keywords:hydrogen bond  blue shift  vibration  bond contraction  substituent effect  
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