The proton spin–lattice relaxation rate has been investigated as a function of pressure (p≤250 MPa), temperature (180 K≤T≤300 K), and oxygen‐17 enrichment (25.7 atom‐%, 50.7 atom‐%) in metastable water. Intramolecular proton–oxygen 17 dipolar interactions in light water in relation to deuterium electric quadrupole interactions in heavy water carry similar dynamic information and allow the complicated dynamic isotope effect in liquid water to be investigated in the whole metastable range. Under hydrostatic pressure the proton relaxation rate curve R1 (T, p, ωH) has been investigated at five different Larmor frequencies (100 MHz≤ω≤500 MHz). These experiments unequivocally prove the isotropy of reorientational motions of water molecules on a n...
We find, by means of a deep inelastic neutron scattering experiment, a significant excess of pro...
A strong temperature dependence of proton mean kinetic energy was observed for liquid water arou...
Isotopic substitutions largely affect the dielectric relaxation dynamics of hydrogen-bonded liquid w...
The proton spin–lattice relaxation rate has been investigated as a function of pressure (p≤250 MPa),...
Spin‐lattice (T1) and spin–spin (T2) relaxation times of the deuterons in supercooled D2O at 225 MPa...
The longitudinal proton relaxation times T1 of the water protons have been determined at 100.1 MHz i...
The pressure and temperature dependence of the spin-lattice relaxation time T1 for the protons in li...
Nuclear magnetic relaxation time measurements are well suited to monitor orientational and positiona...
Les temps de relaxation (T1) pour 11H, 21H et 178O de l'eau légère et de l'eau lourde ont été étudié...
120 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1981.Pulsed NMR techniques are use...
Proton spin-lattice relaxation rates R = T1−1 have been measured in powdered samples of 4-methyl-2,6...
International audienceIn gas phase, collisions that affect the rotational angular momentum lead to t...
Spin-lattice (T1) and spin-spin (T2) relaxation times of proton, deuteron, and oxygen-17 in muscle w...
The spin-lattice relaxation time (T1) of water protons in mouse muscle was studied from 10(4) to 10(...
The dynamic properties of water molecules coordinated to simple ions (alkali and alkali-earth halide...
We find, by means of a deep inelastic neutron scattering experiment, a significant excess of pro...
A strong temperature dependence of proton mean kinetic energy was observed for liquid water arou...
Isotopic substitutions largely affect the dielectric relaxation dynamics of hydrogen-bonded liquid w...
The proton spin–lattice relaxation rate has been investigated as a function of pressure (p≤250 MPa),...
Spin‐lattice (T1) and spin–spin (T2) relaxation times of the deuterons in supercooled D2O at 225 MPa...
The longitudinal proton relaxation times T1 of the water protons have been determined at 100.1 MHz i...
The pressure and temperature dependence of the spin-lattice relaxation time T1 for the protons in li...
Nuclear magnetic relaxation time measurements are well suited to monitor orientational and positiona...
Les temps de relaxation (T1) pour 11H, 21H et 178O de l'eau légère et de l'eau lourde ont été étudié...
120 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1981.Pulsed NMR techniques are use...
Proton spin-lattice relaxation rates R = T1−1 have been measured in powdered samples of 4-methyl-2,6...
International audienceIn gas phase, collisions that affect the rotational angular momentum lead to t...
Spin-lattice (T1) and spin-spin (T2) relaxation times of proton, deuteron, and oxygen-17 in muscle w...
The spin-lattice relaxation time (T1) of water protons in mouse muscle was studied from 10(4) to 10(...
The dynamic properties of water molecules coordinated to simple ions (alkali and alkali-earth halide...
We find, by means of a deep inelastic neutron scattering experiment, a significant excess of pro...
A strong temperature dependence of proton mean kinetic energy was observed for liquid water arou...
Isotopic substitutions largely affect the dielectric relaxation dynamics of hydrogen-bonded liquid w...