Gradient based nuclear magnetic resonance spectroscopy provides a convenient method to determine self-diffusion coefficients especially in liquid samples. The method has many advantages including short experiment time, sensitivity, molecular resolution, and accuracy — all without the need for adding perturbing probes or chemically introducing isotopes. In this contribution we introduce the method and discuss through several examples its uses. We discuss how the method provides diffusion coefficients in supercooled water and alcohol–water mixtures. In ionic liquids the method conveys information about single ion mobilities and cluster formation. In self-assembling systems possible aggregate growth can be conveniently investigated. We demonst...
This is an introductory review on the diffusion Nuclear Magnetic Resonance (dNMR) as a powerful too...
Proton nuclear magnetic resonance (NMR) was used to study the self-diffusion of water in porous syst...
A new pulsed-gradient spin-echo NMR protocol for assessing the local self-diffusion coefficient D(0)...
Gradient based nuclear magnetic resonance spectroscopy provides a convenient method to determine sel...
NMR diffusion measurements (or dNMR) provide a powerful tool for analysis of solution organization a...
NMR is a powerful non-invasive technique utilizing radiofrequency and gradient pulses to manipulate ...
Diffusion coefficients provide uniquely detailed and easily interpreted information on molecular org...
The purpose of this paper has been to show how NMR diffusometry can be used to convey information ab...
Diffusion coefficients provide uniquely detailed and easily interpreted information on molecular org...
The results of NMR, and especially pulsed field gradient NMR (PFG NMR) investigations, are summarize...
In this paper the authors review some of the work which has been done in their laboratory on the dif...
In this paper the authors review some of the work which has been done in their laboratory on the dif...
This is an introductory review on the diffusion Nuclear Magnetic Resonance (dNMR) as a powerful too...
Nuclear magnetic resonance pulsed gradient-spin echo experiments allow probing complex solution prop...
Nuclear magnetic resonance (NMR) is amongst the most powerful and versatile spectroscopic tools for ...
This is an introductory review on the diffusion Nuclear Magnetic Resonance (dNMR) as a powerful too...
Proton nuclear magnetic resonance (NMR) was used to study the self-diffusion of water in porous syst...
A new pulsed-gradient spin-echo NMR protocol for assessing the local self-diffusion coefficient D(0)...
Gradient based nuclear magnetic resonance spectroscopy provides a convenient method to determine sel...
NMR diffusion measurements (or dNMR) provide a powerful tool for analysis of solution organization a...
NMR is a powerful non-invasive technique utilizing radiofrequency and gradient pulses to manipulate ...
Diffusion coefficients provide uniquely detailed and easily interpreted information on molecular org...
The purpose of this paper has been to show how NMR diffusometry can be used to convey information ab...
Diffusion coefficients provide uniquely detailed and easily interpreted information on molecular org...
The results of NMR, and especially pulsed field gradient NMR (PFG NMR) investigations, are summarize...
In this paper the authors review some of the work which has been done in their laboratory on the dif...
In this paper the authors review some of the work which has been done in their laboratory on the dif...
This is an introductory review on the diffusion Nuclear Magnetic Resonance (dNMR) as a powerful too...
Nuclear magnetic resonance pulsed gradient-spin echo experiments allow probing complex solution prop...
Nuclear magnetic resonance (NMR) is amongst the most powerful and versatile spectroscopic tools for ...
This is an introductory review on the diffusion Nuclear Magnetic Resonance (dNMR) as a powerful too...
Proton nuclear magnetic resonance (NMR) was used to study the self-diffusion of water in porous syst...
A new pulsed-gradient spin-echo NMR protocol for assessing the local self-diffusion coefficient D(0)...