The cold-activated activity of MnSOD significantly exceeds the steady-state level of superoxide in the cell. Cold-activation is a regulatory mechanism for the prompt release of hydrogen peroxide fluxes which may act as a second messenger involving the regulation of adaptive thermogenesis. MnSOD may...
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This is a consequence of the condensation of local Mn moments, of magnitude 2.8μ, from the spin-fluctuating state which characterizes the paramagnetic phase. For a wide range of intermediate compositions, 0.35<x<0.75, all long-range magnetic order is lost. However, a small (1%) cell-volume...
A century of research on magnetic phenomena had led to the view that the normal state of itinerant-electron ferromagnets such as Fe, Ni and Co could be des... C Pfleiderer,SR Julian,GG Lonzarich - 《Nature》 被引量: 399发表: 2001年 Quantum Phase Transitions in the Itinerant Ferromagnet ...
Which element has the ground-state electron configuration Kr5s^2 4d^{10} 5p^4? What is the ground state electron configuration for an atom of iron? What element has a ground state electron configuration of Kr5s24d105p2? What element has the ...
For the clean metal surface, Cu(111), the well-known L-gap surface state around the Γ-point is found in angle-resolved photoemission spectroscopy (ARPES) experiments35. Using the graphene’s lattice constant, the calculated binding energy of this state at the Γ-point is −909 meV. [Not...
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Compounds with the doping level 0.25 ≤ x ≤ 0.5 have ferromagnetic ground states; for the 0.75 doped compound, ferrimagnetic phase is obtained, although the ground state of LaMnO 3 and LaNiO 3 is the antiferromagnetic and paramagnetic phase, respectively. There is no distinct charge ...
Moreover the H2 yields are 9× greater, and the CO yields 6× greater, than those produced by the current state-of-the-art material, ceria, when reduced at 1350 °C and re-oxidized at 1000 °C. The temperature at which O2 begins to evolve from the perovskite is fully 300 °C below...
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