1H-NMR as a Structural and Analytical Tool of Intra- and Intermolecular Hydrogen Bonds of Phenol-Containing Natural Products and Model Compounds

被引:167
作者
Charisiadis, Pantelis [1 ]
Kontogianni, Vassiliki G. [1 ]
Tsiafoulis, Constantinos G. [2 ]
Tzakos, Andreas G. [1 ]
Siskos, Michael [1 ]
Gerothanassis, Ioannis P. [1 ]
机构
[1] Univ Ioannina, Dept Chem, Sect Organ Chem & Biochem, GR-45110 Ioannina, Greece
[2] Univ Ioannina, NMR Ctr, GR-45110 Ioannina, Greece
关键词
chemical shifts; hydrogen bonding; H-1-NMR; H-1-C-13; HMBC; phenol OH; natural products; COMPLEX-PLANT EXTRACTS; AB-INITIO CALCULATIONS; CHEMICAL-SHIFTS; PROTON-TRANSFER; NMR-SPECTROSCOPY; HYDROXYL PROTONS; AQUEOUS-SOLUTION; HYPERICIN; ACID; IDENTIFICATION;
D O I
10.3390/molecules190913643
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Experimental parameters that influence the resolution of H-1-NMR phenol OH signals are critically evaluated with emphasis on the effects of pH, temperature and nature of the solvents. Extremely sharp peaks (Delta V-1/2 <= 2 Hz) can be obtained under optimized experimental conditions which allow the application of H-1-C-13 HMBC-NMR experiments to reveal long range coupling constants of hydroxyl protons and, thus, to provide unequivocal assignment of the OH signals even in cases of complex polyphenol natural products. Intramolecular and intermolecular hydrogen bonds have a very significant effect on H-1 OH chemical shifts which cover a region from 4.5 up to 19 ppm. Solvent effects on -OH proton chemical shifts, temperature coefficients (Delta delta/Delta T), OH diffusion coefficients, and (n)J(C-13, (OH)-H-1) coupling constants are evaluated as indicators of hydrogen bonding and solvation state of phenol -OH groups. Accurate H-1 chemical shifts of the OH groups can be calculated using a combination of DFT and discrete solute-solvent hydrogen bond interaction at relatively inexpensive levels of theory, namely, DFT/B3LYP/6-311++G (2d,p). Excellent correlations between experimental H-1 chemical shifts and those calculated at the ab initio level can provide a method of primary interest in order to obtain structural and conformational description of solute-solvent interactions at a molecular level. The use of the high resolution phenol hydroxyl group H-1-NMR spectral region provides a general method for the analysis of complex plant extracts without the need for the isolation of the individual components.
引用
收藏
页码:13643 / 13682
页数:40
相关论文
共 77 条
[1]   An NMR, IR and theoretical investigation of 1H Chemical Shifts and hydrogen bonding in phenols [J].
Abraham, Raymond J. ;
Mobli, Mehdi .
MAGNETIC RESONANCE IN CHEMISTRY, 2007, 45 (10) :865-877
[2]   OBSERVATION OF HYDROXYL PROTONS OF SUCROSE IN AQUEOUS-SOLUTION - NO EVIDENCE FOR PERSISTENT INTRAMOLECULAR HYDROGEN-BONDS [J].
ADAMS, B ;
LERNER, L .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1992, 114 (12) :4827-4829
[3]  
[Anonymous], LINE LC NMR RELATED
[4]  
[Anonymous], 1986, NMR of proteins and nucleic acids
[5]   DENSITY-FUNCTIONAL THERMOCHEMISTRY .3. THE ROLE OF EXACT EXCHANGE [J].
BECKE, AD .
JOURNAL OF CHEMICAL PHYSICS, 1993, 98 (07) :5648-5652
[6]   Ab initio and NMR studies on the effect of hydration on the chemical shift of hydroxy protons in carbohydrates using disaccharides and water/methanol/ethers as model systems [J].
Bekiroglu, S ;
Sandström, A ;
Kenne, L ;
Sandström, C .
ORGANIC & BIOMOLECULAR CHEMISTRY, 2004, 2 (02) :200-205
[7]   Intramolecular O-H center dot center dot center dot O hydrogen bonds assisted by resonance. Correlation between crystallographic data and H-1 NMR chemical shifts [J].
Bertolasi, V ;
Gilli, P ;
Ferretti, V ;
Gilli, G .
JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 2, 1997, (05) :945-952
[8]   Isotope effects on chemical shifts as an analytical tool in structural studies of intramolecular hydrogen bonded compounds [J].
Bolvig, S ;
Hansen, PE .
CURRENT ORGANIC CHEMISTRY, 2000, 4 (01) :19-54
[9]   KETO-ENOL-TAUTOMERISM IN 2-ACETYLTETRALONE - A REINVESTIGATION [J].
BORISOV, EV ;
AGRAWAL, PK .
MAGNETIC RESONANCE IN CHEMISTRY, 1994, 32 (08) :499-499
[10]  
Borisov EV, 1998, MAGN RESON CHEM, V36, pS104, DOI 10.1002/(SICI)1097-458X(199806)36:13<S104::AID-OMR302>3.3.CO