In hemoproteins the relaxation mechanism of iron is Orbach for high spin (HS) and Raman for low spin (LS). We found that in met-hemoglobin and met-myoglobin, under conditions in which the two spin states coexist, both the HS and the LS states relax to the lattice through Orbach-like processes. Alos, very short (approximately 1 ns) and temperature independent transverse relaxation times T2 were estimated. This may result from the unusual electronic structure of mixed states hemoproteins that allows thermal equilibrium and interconversion of the spin states
We report on a study of the early relaxation processes of met-Myoglobin in aqueous solution, using a...
The temperature dependence of the longitudinal magnetic relaxation rates of water protons in solutio...
Mössbauer effect measurements show that the ferrous ions in dehydrated deoxymyoglobin are in the hig...
In hemoproteins the relaxation mechanism of iron is Orbach for high spin (HS) and Raman for low spin...
Nitroxyl free radical electron spin relaxation times for spin-labeled low-spin methemoglobins were m...
The relaxation rates in frozen aqueous solutions of whale ferri-myoglobin azide, bovine ferri-hemogl...
Electron Spin-Lattice relaxation rates are reported for frozen solutions of the blue-copper proteins...
Hemoglobin (Hb) proton spins rapidly equilibrate among themselves after an initial excitation, and r...
Measured electron spin-lattice relaxation rates in frozen glycerin/water solutions at temperatures ...
Electron spin-lattice relaxation measurements have been taken on o camphor-free low-spin ferric cyt...
AbstractThirteen single-cysteine variants of myoglobin were prepared by overexpression of apoprotein...
ABSTRACT Nitroxyl free radical electron spin relaxation times for spin-labeled low-spin methemoglobi...
AbstractThe magnetic relaxation dispersion profiles for formate, acetate, and water protons are repo...
AbstractX-ray absorption near-edge structure (XANES) spectra of ferric myoglobin from horse heart ha...
A frozen solution of 57Fe-enriched metmyoglobin was irradiated by x rays at 77 K. Mössbauer spectra ...
We report on a study of the early relaxation processes of met-Myoglobin in aqueous solution, using a...
The temperature dependence of the longitudinal magnetic relaxation rates of water protons in solutio...
Mössbauer effect measurements show that the ferrous ions in dehydrated deoxymyoglobin are in the hig...
In hemoproteins the relaxation mechanism of iron is Orbach for high spin (HS) and Raman for low spin...
Nitroxyl free radical electron spin relaxation times for spin-labeled low-spin methemoglobins were m...
The relaxation rates in frozen aqueous solutions of whale ferri-myoglobin azide, bovine ferri-hemogl...
Electron Spin-Lattice relaxation rates are reported for frozen solutions of the blue-copper proteins...
Hemoglobin (Hb) proton spins rapidly equilibrate among themselves after an initial excitation, and r...
Measured electron spin-lattice relaxation rates in frozen glycerin/water solutions at temperatures ...
Electron spin-lattice relaxation measurements have been taken on o camphor-free low-spin ferric cyt...
AbstractThirteen single-cysteine variants of myoglobin were prepared by overexpression of apoprotein...
ABSTRACT Nitroxyl free radical electron spin relaxation times for spin-labeled low-spin methemoglobi...
AbstractThe magnetic relaxation dispersion profiles for formate, acetate, and water protons are repo...
AbstractX-ray absorption near-edge structure (XANES) spectra of ferric myoglobin from horse heart ha...
A frozen solution of 57Fe-enriched metmyoglobin was irradiated by x rays at 77 K. Mössbauer spectra ...
We report on a study of the early relaxation processes of met-Myoglobin in aqueous solution, using a...
The temperature dependence of the longitudinal magnetic relaxation rates of water protons in solutio...
Mössbauer effect measurements show that the ferrous ions in dehydrated deoxymyoglobin are in the hig...