PMID-sentid Pub_year Sent_text comp_official_name comp_offsetprotein_name organism prot_offset 8282233-1 1993 The oxidation of Fe2+ was investigated by electron paramagnetic resonance (EPR) spin trapping techniques with N-t-butyl-alpha-phenylnitrone (PBN) and dimethyl sulfoxide. Lead 141-144 spindlin 1 Homo sapiens 80-84 8282233-2 1993 Under pure oxygen, the spin adduct PBN/.OCH3 was rapidly generated by the addition of Fe2+ (0.2-1.2 mM) into phosphate buffer containing ethylenediaminetetraacetate (EDTA), dimethyl sulfoxide and PBN at pH 7.4, but it decayed. Lead 35-38 spindlin 1 Homo sapiens 23-27 8282233-2 1993 Under pure oxygen, the spin adduct PBN/.OCH3 was rapidly generated by the addition of Fe2+ (0.2-1.2 mM) into phosphate buffer containing ethylenediaminetetraacetate (EDTA), dimethyl sulfoxide and PBN at pH 7.4, but it decayed. Lead 196-199 spindlin 1 Homo sapiens 23-27 1773943-2 1991 We report here that the spin trap agent, N-tert.-butyl-alpha-phenylnitrone (PBN) reduced neuronal damage in gerbils subjected to forebrain ischaemia. Lead 76-79 spindlin 1 Homo sapiens 24-28 1311166-2 1992 Under pure oxygen, the spin adduct PBN/.OCH3 was rapidly generated by the addition of Fe2+ (0.2-1.2 mM) into phosphate buffer containing ethylenediaminetetraacetate (EDTA), dimethyl sulfoxide, and PBN at pH 7.4, but it decayed. Lead 35-38 spindlin 1 Homo sapiens 23-27 1311166-2 1992 Under pure oxygen, the spin adduct PBN/.OCH3 was rapidly generated by the addition of Fe2+ (0.2-1.2 mM) into phosphate buffer containing ethylenediaminetetraacetate (EDTA), dimethyl sulfoxide, and PBN at pH 7.4, but it decayed. Lead 197-200 spindlin 1 Homo sapiens 23-27 35522500-0 2022 Momentum-Space Spin Antivortex and Spin Transport in Monolayer Pb. Lead 63-65 spindlin 1 Homo sapiens 35-39 2154454-3 1990 Consequently, we have employed a new approach that uses the spin trap N-t-butyl-alpha-phenyl-nitrone (PBN) and dimethyl sulfoxide. Lead 102-105 spindlin 1 Homo sapiens 60-64 2154454-5 1990 This nitroxide, which we have assigned as PBN/.OCH3, appears to be an oxygen-centered radical derived from the spin trapping of the reaction product of O2 and methyl radical. Lead 42-45 spindlin 1 Homo sapiens 111-115 34606138-4 2022 The dynamic nuclear polarization via spin-oriented holes is realized and the identification of the 207 Pb isotope in optically-detected nuclear magnetic resonance proves that the hole-nuclei interaction is dominated by the lead ions. Lead 103-105 spindlin 1 Homo sapiens 37-41 31703503-1 2019 Hybrid organic-inorganic perovskites have shown great promise for spintronic applications due to their large spin-orbit coupling induced by the Pb and halogen atoms. Lead 144-146 spindlin 1 Homo sapiens 66-70 32678650-2 2020 The spin density matrix element rho_{00} is measured at midrapidity ( y <0.5) in Pb-Pb collisions at a center-of-mass energy (sqrt[s_{NN}]) of 2.76 TeV with the ALICE detector. Lead 81-83 spindlin 1 Homo sapiens 4-8 32678650-2 2020 The spin density matrix element rho_{00} is measured at midrapidity ( y <0.5) in Pb-Pb collisions at a center-of-mass energy (sqrt[s_{NN}]) of 2.76 TeV with the ALICE detector. Lead 84-86 spindlin 1 Homo sapiens 4-8 32406467-0 2020 Spin-coated fluorinated PbS QD superlattice thin film with high hole mobility. Lead 24-27 spindlin 1 Homo sapiens 0-4 29685031-3 2018 We investigate theoretically the STM tip control of local spin states in a single iron(II) porphyrin molecule adsorbed on the Pb(111) substrate. Lead 126-128 spindlin 1 Homo sapiens 58-62 28225625-4 2017 For clusters with Pb atoms, the effect of spin-orbit coupling could be observed distinctly in most cases. Lead 18-20 spindlin 1 Homo sapiens 42-46 22463564-2 2012 By placing manganese phthalocyanine (MnPc) molecules on Fe-supported Pb islands, a Kondo system is devised which is exchange coupled to a magnetic substrate via conduction electrons in Pb, inducing spin splitting of the Kondo resonance. Lead 69-71 spindlin 1 Homo sapiens 198-202 22463564-2 2012 By placing manganese phthalocyanine (MnPc) molecules on Fe-supported Pb islands, a Kondo system is devised which is exchange coupled to a magnetic substrate via conduction electrons in Pb, inducing spin splitting of the Kondo resonance. Lead 185-187 spindlin 1 Homo sapiens 198-202 17616181-6 2007 Coupling of the ortho phenyl protons to the spin 1/2 isotopes of Sn and of Pb was a characteristic feature of the 1H NMR spectrum. Lead 75-77 spindlin 1 Homo sapiens 44-52 21596987-3 2011 Local spectroscopy at 4.5 kelvin shows that the spin-1 system formed by manganese-phthalocyanine (MnPc) adsorbed on Pb(111) can lie in two different magnetic ground states. Lead 116-118 spindlin 1 Homo sapiens 48-54 19772319-5 2009 Reduction of a more soluble analogue of TPZ, in redox equilibrium with its 1-oxide derivative, led to spin trapping of both a carbon-centered radical and a nitrogen-centered radical by N-tert-butyl-alpha-phenylnitrone (PBN). Lead 219-222 spindlin 1 Homo sapiens 102-106 20094680-5 2010 Spin-orbit coupling profoundly influences the structure of Pb(+)He(n) clusters and causes a gradual structural evolution without pronounced solvation shells. Lead 59-61 spindlin 1 Homo sapiens 0-4 19489580-1 2009 High-resolution magic-angle spinning NMR of high-Z spin-1/2 nuclei such as (125)Te, (207)Pb, (119)Sn, (113)Cd, and (195)Pt is often hampered by large (>1000 ppm) chemical-shift anisotropies, which result in strong spinning sidebands that can obscure the centerbands of interest. Lead 89-91 spindlin 1 Homo sapiens 51-57 11999381-1 2002 We have previously suggested that the spin trap agent, N-tert-butyl-alpha-phenylnitrone (PBN) can function not only as an antioxidant but also as a nitric oxide (NO) donor. Lead 89-92 spindlin 1 Homo sapiens 38-42 15183130-1 2004 Several derivatives of N-t-butyl-alpha-phenylnitrone (PBN) such as N-2-(2-ethoxycarbonyl-propyl)-alpha-phenylnitrone (EPPN) have recently been reported to form superoxide spin adducts (t(1/2) ca. Lead 54-57 spindlin 1 Homo sapiens 171-175