The metalloporphyrins, Me-TSPP [Me = Cr(III)Me=Cr(III), Mn(III), Mn(II), Fe(III), and TSPP=meso-(tetra-pp-sulfonatophenyl)porphyrin], which possess electron spins S = 3/2S=3∕2, 2, 5/25∕2, and 5/25∕2, respectively, comprise an important series of model systems for mechanistic studies of NMR paramagnetic relaxation enhancement (NMR-PRE). For these S>1/2S>1∕2 spin systems, the NMR-PRE depends critically on the detailed form of the zero-field splitting (zfs) tensor. We report the results of experimental and theoretical studies of the NMR relaxation mechanism associated with Fe(III)-TSPP, a spin 5/25∕2 complex for which the overall zfs is relatively large (D ≈ 10 cm−1)(D≈10cm−1). A comparison of experimental data with spin dynamics simulations s...
Temperature dependence of Nuclear Magnetic Resonance (NMR) chemical shifts and longitudinal and tran...
Electron spin relaxation of transition metal ions with spin S ≥ 1S⩾1 results primarily from thermal ...
The powder samples of meso-tetraphenyloporphyrin iron(III) chloride and ferriprotoporphyrin IX chlor...
Paramagnetic species in solution considerably enhance nuclear spin relaxation rates in nuclear magne...
Dissolved paramagnetic ions generally provide an efficient mechanism for the relaxation of nuclear s...
Paramagnetic species in solution enhance nuclear spin relaxation rates in nuclear magnetic resonance...
The influence of zero field splitting (zfs) interactions on the magnetic field dispersion profile of...
The enhancement of nuclear spin relaxation rate R1m that is produced by paramagnetic metal ions in s...
The influence of ZFS interactions on the NMR paramagnetic relaxation enhancement (NMR-PRE) produced ...
Effects due to the nonuniaxial part of the zero field splitting (ZFS) tensor on NMR relaxation enhan...
The NMR (nuclear magnetic resonance) paramagnetic relaxation enhancement (NMR‐PRE) that is produced ...
The enhancement of nuclear magnetic resonance (NMR) relaxation rates produced by paramagnetic solute...
Temperature dependence of Nuclear Magnetic Resonance (NMR) chemical shifts and longitudinal and tran...
The temperature dependence of longitudinal and transverse relaxation times (T1 and T2) has been stud...
High-Frequency and -Field EPR (HFEPR) studies of Fe(TPP)X (X = F, Cl, Br; I, TPP2−= meso-tetraphenyl...
Temperature dependence of Nuclear Magnetic Resonance (NMR) chemical shifts and longitudinal and tran...
Electron spin relaxation of transition metal ions with spin S ≥ 1S⩾1 results primarily from thermal ...
The powder samples of meso-tetraphenyloporphyrin iron(III) chloride and ferriprotoporphyrin IX chlor...
Paramagnetic species in solution considerably enhance nuclear spin relaxation rates in nuclear magne...
Dissolved paramagnetic ions generally provide an efficient mechanism for the relaxation of nuclear s...
Paramagnetic species in solution enhance nuclear spin relaxation rates in nuclear magnetic resonance...
The influence of zero field splitting (zfs) interactions on the magnetic field dispersion profile of...
The enhancement of nuclear spin relaxation rate R1m that is produced by paramagnetic metal ions in s...
The influence of ZFS interactions on the NMR paramagnetic relaxation enhancement (NMR-PRE) produced ...
Effects due to the nonuniaxial part of the zero field splitting (ZFS) tensor on NMR relaxation enhan...
The NMR (nuclear magnetic resonance) paramagnetic relaxation enhancement (NMR‐PRE) that is produced ...
The enhancement of nuclear magnetic resonance (NMR) relaxation rates produced by paramagnetic solute...
Temperature dependence of Nuclear Magnetic Resonance (NMR) chemical shifts and longitudinal and tran...
The temperature dependence of longitudinal and transverse relaxation times (T1 and T2) has been stud...
High-Frequency and -Field EPR (HFEPR) studies of Fe(TPP)X (X = F, Cl, Br; I, TPP2−= meso-tetraphenyl...
Temperature dependence of Nuclear Magnetic Resonance (NMR) chemical shifts and longitudinal and tran...
Electron spin relaxation of transition metal ions with spin S ≥ 1S⩾1 results primarily from thermal ...
The powder samples of meso-tetraphenyloporphyrin iron(III) chloride and ferriprotoporphyrin IX chlor...