Two powerful methods of high-resolution NMR spectroscopy have successfully been applied for the solution of a stereochemical problem. The advantages of a modified pulse sequence for heteronuclear 2D shift correlation with inverse mode of detection and of a new variant of homonuclear 1D-NOE spectroscopy, improved with respect to sensitivity and spectral quality, are demonstrated. These two methods allow structure elucidation by low sample amounts within reasonable measuring times
dure, NMR serves as one of the important binding assays. A number of homo- and heteronuclear pulse s...
Resolution and sensitivity are paramount for extracting detailed structural information using NMR sp...
NMR techniques are widely used together with multivariate analysis approaches in order to characteri...
The present thesis reports new approaches to increase sensitivity and resolution in high-resolution ...
The limited chemical shift range of protons and pairwise interaction among all the abundant nuclear ...
An analysis of resolution in nuclear magnetic resonance (NMR) spectra in terms of separation, linewi...
The potential of three recently developed techniques, proton 2D J-. ¹³C- ¹H chemical shift correlati...
Practical aspects regarding the acquisition and processing of 3D heteronuclear data sets are discuss...
Nuclear Magnetic Resonance Spectroscopy (NMR) nowadays is one of the most versatile tools for chemis...
Measuring the nuclear magnetic resonance spectra of low-gamma heteronuclei such as N-15 constitutes ...
Continuous non-Cartesian sampling schemes, widely used in modem NMR imaging, can yield complete 2D N...
Low resolution in the indirect dimension of 1H–13C heteronuclear experiments is a long-standing prob...
Since the use of two-dimensional NMR for correlating the spectra of coupled heteronuclei was first p...
Broadband homonuclear decoupling (BBHD) in the indirect 1H dimension of 2D experiments can be obtain...
State-of-the-art technologies and methodologies in NMR spectroscopy make it possible to obtain very ...
dure, NMR serves as one of the important binding assays. A number of homo- and heteronuclear pulse s...
Resolution and sensitivity are paramount for extracting detailed structural information using NMR sp...
NMR techniques are widely used together with multivariate analysis approaches in order to characteri...
The present thesis reports new approaches to increase sensitivity and resolution in high-resolution ...
The limited chemical shift range of protons and pairwise interaction among all the abundant nuclear ...
An analysis of resolution in nuclear magnetic resonance (NMR) spectra in terms of separation, linewi...
The potential of three recently developed techniques, proton 2D J-. ¹³C- ¹H chemical shift correlati...
Practical aspects regarding the acquisition and processing of 3D heteronuclear data sets are discuss...
Nuclear Magnetic Resonance Spectroscopy (NMR) nowadays is one of the most versatile tools for chemis...
Measuring the nuclear magnetic resonance spectra of low-gamma heteronuclei such as N-15 constitutes ...
Continuous non-Cartesian sampling schemes, widely used in modem NMR imaging, can yield complete 2D N...
Low resolution in the indirect dimension of 1H–13C heteronuclear experiments is a long-standing prob...
Since the use of two-dimensional NMR for correlating the spectra of coupled heteronuclei was first p...
Broadband homonuclear decoupling (BBHD) in the indirect 1H dimension of 2D experiments can be obtain...
State-of-the-art technologies and methodologies in NMR spectroscopy make it possible to obtain very ...
dure, NMR serves as one of the important binding assays. A number of homo- and heteronuclear pulse s...
Resolution and sensitivity are paramount for extracting detailed structural information using NMR sp...
NMR techniques are widely used together with multivariate analysis approaches in order to characteri...