The present study reports a two dimensional NMR experiment which separates single quantum spectra of enantiomers from that of a racemic mixture. This is a blend of selective double quantum refocusing, for resolving couplings and chemical shift interactions along two dimensions followed by correlation of the selectively excited protons to the entire coupled spin network. The concept is solely based on the presence of distinct intra methyl dipolar couplings of different enantiomers when dissolved in chiral orienting media. The analysis of single enantiomer spectrum obtained from respective F-2 cross sections yield all the spectral information. (C) 2011 Elsevier Inc. All rights reserved
In general, the proton NMR spectra of chiral molecules aligned in the chiral liquid crystalline medi...
The small chemical shift dispersion and complex multiplicity pattern in proton NMR limit quantificat...
The small chemical shift dispersion and complex multiplicity pattern in proton NMR limit quantificat...
The present study reports a two dimensional NMR experiment which separates single quantum spectra of...
The differences in chemical shift anisotropies, dipolar couplings, and quadrupolar couplings of two ...
NMR spectroscopic discrimination of optical enantiomers is most often carried out using $^2H$ and $^...
The H-1 NMR spectroscopic discrimination of enantiomers in the solution state and the measurement of...
The routine use of proton NMR for the visualization of enantiomers, aligned in the chiral liquid cry...
The routine use of proton NMR for the visualization of enantiomers, aligned in the chiral liquid cry...
A two dimensional correlation experiment for the measurement of short and long range homo- and heter...
One-dimensional (1D) proton NMR spectra of enantiomers are generally undecipherable in chiral orie...
The higher substrate and chiral auxiliary concentration is a pre-requisite to obtain efficient separ...
The higher substrate and chiral auxiliary concentration is a pre-requisite to obtain efficient separ...
Chiral auxiliaries are used for NMR spectroscopic study of enantiomers. Often the presence of impuri...
In general, the proton NMR spectra of chiral molecules aligned in the chiral liquid crystalline medi...
In general, the proton NMR spectra of chiral molecules aligned in the chiral liquid crystalline medi...
The small chemical shift dispersion and complex multiplicity pattern in proton NMR limit quantificat...
The small chemical shift dispersion and complex multiplicity pattern in proton NMR limit quantificat...
The present study reports a two dimensional NMR experiment which separates single quantum spectra of...
The differences in chemical shift anisotropies, dipolar couplings, and quadrupolar couplings of two ...
NMR spectroscopic discrimination of optical enantiomers is most often carried out using $^2H$ and $^...
The H-1 NMR spectroscopic discrimination of enantiomers in the solution state and the measurement of...
The routine use of proton NMR for the visualization of enantiomers, aligned in the chiral liquid cry...
The routine use of proton NMR for the visualization of enantiomers, aligned in the chiral liquid cry...
A two dimensional correlation experiment for the measurement of short and long range homo- and heter...
One-dimensional (1D) proton NMR spectra of enantiomers are generally undecipherable in chiral orie...
The higher substrate and chiral auxiliary concentration is a pre-requisite to obtain efficient separ...
The higher substrate and chiral auxiliary concentration is a pre-requisite to obtain efficient separ...
Chiral auxiliaries are used for NMR spectroscopic study of enantiomers. Often the presence of impuri...
In general, the proton NMR spectra of chiral molecules aligned in the chiral liquid crystalline medi...
In general, the proton NMR spectra of chiral molecules aligned in the chiral liquid crystalline medi...
The small chemical shift dispersion and complex multiplicity pattern in proton NMR limit quantificat...
The small chemical shift dispersion and complex multiplicity pattern in proton NMR limit quantificat...