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- W2060184151 abstract "The authors report observation of the NMR line of $^{195}mathrm{Pt}$ atoms in the surface layer of small platinum-metal particles on which $^{13}mathrm{CO}$ has been chemisorbed. The surface $^{195}mathrm{Pt}$ atoms are resolved from those of $^{195}mathrm{Pt}$ atoms deeper in the particle by spin-echo double resonance between $^{195}mathrm{Pt}$ and $^{13}mathrm{C}$. The particles, supported on ensuremath{eta}-alumina, had dispersions (fraction of the atoms that are on the surface) of 26% and 76%. Comparison with $^{195}mathrm{Pt}$ resonance in Pt carbonyls suggests that the magnitude of the Knight shift of the surface Pt is less than 0.2%. Analysis of the $^{195}mathrm{Pt}$ spin-lattice relaxation indicates that the small surface Knight shift results from cancellation of 6s and 5d core-polarization contributions as was found theoretically by Weinert and Freeman for clean Pt surfaces. The $^{13}mathrm{ensuremath{-}}^{195}$Pt indirect spin coupling is found to be very similar to those in diamagnetic platinum carbonyl molecules. The results show that CO bonds via the C atom and verify that concepts from studies of large single crystals are valid for the small particles. The key features of the $^{195}mathrm{Pt}$ line shapes in these small platinum particles are described by a simple phenomenological model of the spatial Knight-shift variation inside these particles. The model successfully describes the major structure seen in the NMR line shapes of samples with dispersions ranging from 5% to 76%." @default.
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- W2060184151 date "1985-05-01" @default.
- W2060184151 modified "2023-09-23" @default.
- W2060184151 title "NMR of platinum catalysts: Double NMR of chemisorbed carbon monoxide and a model for the platinum NMR line shape" @default.
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- W2060184151 doi "https://doi.org/10.1103/physrevb.31.5663" @default.
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