New schemes are introduced that allow one to improve the resolution in the indirect dimension of single-scan 'ultrafast' two-dimensional NMR spectra. The methods combine undersampling with band-selective pulses to recover signals that lie outside the detection bandwidth. The efficiency is illustrated for homonuclear total correlation spectroscopy (TOCSY) of quinidine. (C) 2008 Elsevier Inc. All rights reserved
Broadband homonuclear decoupling (BBHD) in the indirect 1H dimension of 2D experiments can be obtain...
Recent ultrafast techniques make it possible to obtain multidimensional (nD) NMR spectra in a single...
Background: Two-dimensional (2D) nuclear magnetic resonance (NMR) spectroscopy is a powerful and non...
The synergic use of pure shift NMR techniques and compressive sensing allows the recording of two-di...
Broadband homonuclear decoupling (BBHD) in the indirect 1H dimension of 2D experiments can be obtain...
A drastic reduction of the time required for two-dimensional NMR experiments can be achieved by redu...
Sensitivity and resolution are perhaps the two important parameters that have concerned NMR research...
Ultrafast (UF) 2D NMR enables the acquisition of 2D spectra in a single-scan. In spite of its promis...
Ultrafast (UF) 2D NMR enables the acquisition of 2D spectra in a single-scan. In spite of its promis...
Although nuclear magnetic resonance spectroscopy is a potent analytical tool for identification, qua...
Recent developments in data sampling and processing techniques have made it possible to acquire 2‐di...
Two-dimensional (2D) spectroscopy is central to many contemporary applications of NMR. Recently, we ...
A new algorithm for optimizing spectral width in the indirect dimension of heteronuclear 2D experime...
International audienceThe possibility to record a full 2D spectrum in less than a second using ultra...
Multidimensional spectroscopy plays a number of essential roles in contemporary magnetic resonance. ...
Broadband homonuclear decoupling (BBHD) in the indirect 1H dimension of 2D experiments can be obtain...
Recent ultrafast techniques make it possible to obtain multidimensional (nD) NMR spectra in a single...
Background: Two-dimensional (2D) nuclear magnetic resonance (NMR) spectroscopy is a powerful and non...
The synergic use of pure shift NMR techniques and compressive sensing allows the recording of two-di...
Broadband homonuclear decoupling (BBHD) in the indirect 1H dimension of 2D experiments can be obtain...
A drastic reduction of the time required for two-dimensional NMR experiments can be achieved by redu...
Sensitivity and resolution are perhaps the two important parameters that have concerned NMR research...
Ultrafast (UF) 2D NMR enables the acquisition of 2D spectra in a single-scan. In spite of its promis...
Ultrafast (UF) 2D NMR enables the acquisition of 2D spectra in a single-scan. In spite of its promis...
Although nuclear magnetic resonance spectroscopy is a potent analytical tool for identification, qua...
Recent developments in data sampling and processing techniques have made it possible to acquire 2‐di...
Two-dimensional (2D) spectroscopy is central to many contemporary applications of NMR. Recently, we ...
A new algorithm for optimizing spectral width in the indirect dimension of heteronuclear 2D experime...
International audienceThe possibility to record a full 2D spectrum in less than a second using ultra...
Multidimensional spectroscopy plays a number of essential roles in contemporary magnetic resonance. ...
Broadband homonuclear decoupling (BBHD) in the indirect 1H dimension of 2D experiments can be obtain...
Recent ultrafast techniques make it possible to obtain multidimensional (nD) NMR spectra in a single...
Background: Two-dimensional (2D) nuclear magnetic resonance (NMR) spectroscopy is a powerful and non...