We report a single C-13 spin edited selective proton-proton correlation experiment to decipher overcrowded 13C coupled proton NMR spectra of weakly dipolar coupled spin systems. The experiment unravels the masked C-13 satellites in proton spectrum and permits the measurement of one bond carbon-proton residual dipolar couplings in I3S and for each diastereotopic proton in I2S groups. It also provides all the possible homonuclear proton-proton residual couplings which are otherwise difficult to extract from the broad and featureless one dimensional H-1 spectrum, in addition to enantiodifferentiation in a chiral molecule. Employment of heteronuclear (C-13) decoupling in the evolution period results in complete demixing of overlapped signals fr...
In the present work a novel methodology is developed for the unambiguous discrimination of enantiome...
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...
We report a single C-13 spin edited selective proton-proton correlation experiment to decipher overc...
A two dimensional correlation experiment for the measurement of short and long range homo- and heter...
The simple two dimensional C-13-satellite J/D-resolved experiments have been proposed for the visual...
The simple two dimensional C-13-satellite J/D-resolved experiments have been proposed for the visual...
The omega(1)-heterodecoupled-C-13-filtered proton detected NMR experiments are reported for the accu...
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...
One-dimensional (1D) proton NMR spectra of enantiomers are generally undecipherable in chiral orie...
Nuclear Magnetic Resonance in chiral liquid crystalline media is a powerful tool for deciphering mix...
The differential values of NMR spectral parameters like chemical shift anisotropies, dipolar couplin...
The differential values of NMR spectral parameters like chemical shift anisotropies, dipolar couplin...
In the present work a novel methodology is developed for the unambiguous discrimination of enantiome...
In the present work a novel methodology is developed for the unambiguous discrimination of enantiome...
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...
We report a single C-13 spin edited selective proton-proton correlation experiment to decipher overc...
A two dimensional correlation experiment for the measurement of short and long range homo- and heter...
The simple two dimensional C-13-satellite J/D-resolved experiments have been proposed for the visual...
The simple two dimensional C-13-satellite J/D-resolved experiments have been proposed for the visual...
The omega(1)-heterodecoupled-C-13-filtered proton detected NMR experiments are reported for the accu...
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...
One-dimensional (1D) proton NMR spectra of enantiomers are generally undecipherable in chiral orie...
Nuclear Magnetic Resonance in chiral liquid crystalline media is a powerful tool for deciphering mix...
The differential values of NMR spectral parameters like chemical shift anisotropies, dipolar couplin...
The differential values of NMR spectral parameters like chemical shift anisotropies, dipolar couplin...
In the present work a novel methodology is developed for the unambiguous discrimination of enantiome...
In the present work a novel methodology is developed for the unambiguous discrimination of enantiome...
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...