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Pulsed gradient spin echo nuclear magnetic approach

An a priori prediction for cocrystal formation has been reported that is based on intermolecular pair interactions that have been characterized using pulsed gradient spin-echo nuclear magnetic resonance, and tested against the conventional ionization constant guideline for 25 molecular pairs [17]. This approach was shown to work well even in different... [Pg.363]

Molecular self-diffusion coefficients are experimentally easily accessible and can be measured accurately with various techniques. However, the Fourier transform pulsed field gradient spin-echo NMR (FT PGSE NMR) approach has during the last decade proved to be superior to other approaches for several reasons. In this technique the displacement of nuclear spins in a controlled magnetic field gradient is monitored, and the contributions of different components are resolved by Fourier transformation of the NMR signal (spin echo). [Pg.314]


See other pages where Pulsed gradient spin echo nuclear magnetic approach is mentioned: [Pg.166]    [Pg.116]    [Pg.308]    [Pg.240]    [Pg.252]    [Pg.547]    [Pg.152]    [Pg.326]   
See also in sourсe #XX -- [ Pg.383 , Pg.384 ]




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Gradient pulse

Gradient pulsed

Gradient-echo

Magnetic gradient

Magnetic nuclear spin-echo

Nuclear spin

Nuclear spin, magnetic

Pulse Spin-echo

Pulse echo

Pulse gradient spin echo

Pulsed gradient spin echo nuclear magnetic

Pulsed gradient spin echo-nuclear

Pulsed gradient spin-echo

Pulsed magnet

Spin magnetism

Spin magnetization

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