Thermodynamic and 13C NMR studies of the inclusion complexes of α- and β-cyclodextrins with cyano- and nitrophenols in aqueous solution

被引:11
|
作者
Hamai, S
Takahashi, A
Hori, K
机构
[1] Akita Univ, Fac Educ & Human Studies, Dept Chem, Akita 0108502, Japan
[2] Akita Res Inst Food & Brewing, Akita 0101623, Japan
关键词
cyclodextrins; phenols; inclusion complexes; spectrophotometry; thermodynamic quantities; C-13; NMR;
D O I
10.1023/A:1008199921925
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Equilibrium constants for the formation of 1 : 1 inclusion complexes of alpha-cyclodextrin (alpha-CD) with neutral and anionic phenol derivatives (3- and 4-cyanophenols and 3- and 4-nitrophenols) have been evaluated at 5, 12, 25, and 35 degrees C by means of spectrophotometry. Similarly, the equilibrium constants have been determined for the inclusion complexes of beta-cyclodextrin (beta-CD) with the phenols. Enthalpy and entropy changes for the formation of the inclusion complexes have been estimated from the temperature dependences of the equilibrium constants. With alpha-CD, the enthalpy and entropy changes for the anionic species have been found to be more negative than those for the neutral ones, except for 4-cyanophenol, suggesting that the inclusion complexes of the anionic species are more rigid than those of the neutral species. From analyses of chemical shift differences in C-13 NMR spectra of 3- and 4- cyanophenols and 3- and 4-nitrophenols in aqueous solutions with and without CDs, a nitro or a cyano group has been found to be first bound to the alpha- and beta-CD cavities.
引用
收藏
页码:197 / 207
页数:11
相关论文
共 50 条
  • [1] Thermodynamic and 13C NMR Studies of the Inclusion Complexes of α- and β-Cyclodextrins with Cyano- and Nitrophenols in Aqueous Solution
    Sanyo Hamai
    Ayako Takahashi
    Kazuyuki Hori
    Journal of inclusion phenomena and macrocyclic chemistry, 2000, 37 : 197 - 207
  • [2] Thermodynamic and 13C NMR studies of the inclusion complexes of α-and β-cyclodextrins with cyano-and nitrophenols in aqueous solution
    Hamai, Sanyo
    Takahashi, Ayako
    Hori, Kazuyuki
    Journal of Inclusion Phenomena, 2000, 37 (1-4): : 197 - 207
  • [3] ~1H and 13C NMR Studies on M (EGTA) Complexes in Aqueous Solution
    张善荣
    任吉民
    吴亦洁
    刘爱琢
    裴奉奎
    Chinese Science Bulletin, 1993, (22) : 1880 - 1883
  • [4] Studies of inclusion complexes of dichloromethane in cryptophanes by exchange kinetics and 13C NMR in solution and the solid state
    Aski, S. Nikkhou
    Lo, A. Y. H.
    Brotin, T.
    Dutasta, J. P.
    Eden, M.
    Kowalewski, J.
    JOURNAL OF PHYSICAL CHEMISTRY C, 2008, 112 (36): : 13873 - 13881
  • [5] Inclusion complexes of cyclodextrins with benzoquinolines in aqueous solution
    Hamai, Sanyo
    BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN, 2006, 79 (07) : 1039 - 1045
  • [6] Inclusion complexes of cyproterone acetate with cyclodextrins in aqueous solution
    De Hassonville, SH
    Perly, B
    Piel, G
    Van Hees, T
    Barillaro, V
    Bertholet, P
    Delattre, L
    Evrard, B
    JOURNAL OF INCLUSION PHENOMENA AND MACROCYCLIC CHEMISTRY, 2002, 44 (1-4) : 289 - 292
  • [7] Multimodal inclusion complexes of ampicillin with β-cyclodextrins in aqueous solution
    Aki, H
    Niiya, T
    Iwase, Y
    Kawasaki, Y
    Kumai, K
    Kimura, T
    THERMOCHIMICA ACTA, 2004, 416 (1-2) : 87 - 92
  • [8] Inclusion Complexes of Cyproterone Acetate with Cyclodextrins in Aqueous Solution
    Sandrine Henry De Hassonville
    Bruno Perly
    Géraldine Piel
    Thierry Van Hees
    Valéry Barillaro
    Pascal Bertholet
    Luc Delattre
    Brigitte Evrard
    Journal of inclusion phenomena and macrocyclic chemistry, 2002, 44 : 289 - 292
  • [9] NMR Studies of the Inclusion Complexes Between Ezetimibe and Cyclodextrins
    Kelemen, Hajnal
    Csillag, Angella
    Noszal, Bela
    Orgovan, Gabor
    REVISTA DE CHIMIE, 2018, 69 (07): : 1838 - 1841
  • [10] NMR studies of inclusion complexes: naphthalene and natural cyclodextrins
    Jopa, Sylwia
    Wojcik, Jacek
    Ejchart, Andrzej
    Nowakowski, Michal
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2022, 24 (22) : 13690 - 13697