1986
DOI: 10.1103/physrevlett.56.1921
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Orientational Phase Transition in the System Pyridine/Ag(111): A Near-Edge X-Ray-Absorption Fine-Structure Study

Abstract: A phase transition has been observed in the system pyridine adsorbed on Ag(lll) at 100 K by near-edge x-ray-absorption fine-structure measurements in real time. At low pyridine coverages an angle between the ring plane and the surface plane of 45° ±5° was observed. This phase converts sharply at a submonolayer coverage to a phase with an angle between the ring plane and the surface plane of 70° ± 5°. Continued exposure gradually leads to a randomly oriented multilayer.PACS numbers: 68.35.Rh, 68.35.Bs, 78.70.Dr… Show more

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Cited by 112 publications
(81 citation statements)
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“…[18d,e, 19a,c] These bands have been assigned to the stretching vibration of NÀAg and NÀAu bonds, respectively. The binding of the pyridine N-end to metal surfaces was also confirmed by the near-edge X-ray absorption fine-structure measurement for pyridine adsorbed on Ag(111), [24] and also by a DFT calculation for pyridine on Au(111). [25] SERS of pyridine adsorbed on the silver-gold bimetallic surfaces were observed in recent studies, and the results indicate that the Raman spectrum of adsorbed pyridine is very sensitive to the surface electronic structure and composition.…”
Section: Introductionmentioning
confidence: 61%
See 1 more Smart Citation
“…[18d,e, 19a,c] These bands have been assigned to the stretching vibration of NÀAg and NÀAu bonds, respectively. The binding of the pyridine N-end to metal surfaces was also confirmed by the near-edge X-ray absorption fine-structure measurement for pyridine adsorbed on Ag(111), [24] and also by a DFT calculation for pyridine on Au(111). [25] SERS of pyridine adsorbed on the silver-gold bimetallic surfaces were observed in recent studies, and the results indicate that the Raman spectrum of adsorbed pyridine is very sensitive to the surface electronic structure and composition.…”
Section: Introductionmentioning
confidence: 61%
“…[32] The latter one is expected to be the upper limit of the binding energy of pyridine interacting with silver. For pyridine binding to gold clusters, binding energies of 24 . [54] The binding energy of pyridine/Cu(110) is expected to be close to that of pyridine/gold.…”
Section: Pyàagau 2 and Pyàauagmentioning
confidence: 99%
“…At a higher energy by approximately 4 eV from the LUMO peak, another O* peak is observed both for the two edges and attributed to O* 2 (b 1 ), which corresponds to LUMO+2. 18 Because the energy level of LUMO+1 with a 2 symmetry is lying very closely from the LUMO level, 19 it cannot be clearly distinguished by the present energy resolution.…”
Section: Resultsmentioning
confidence: 91%
“…3. Both for the two edges, a prominent peak is observed at 285.6 eV for C-K and 399.0 eV for N-K, which is associated with excitation to O* 1 (b 1 ) (LUMO), 18,19 and exhibits clear polarization dependence; it is strongly enhanced at the normal incidence. Note that there is a shoulder structure at 285.0 eV for C K-edge.…”
Section: Resultsmentioning
confidence: 96%
“…Such coverage-dependent molecular reorientations are well known for simpler systems, for example, pyridine adsorbed on Ag(111). [22] In the present case, this Scheme 1. a) Chemical structure of zinc tetra-(3,5-di-tert-butylphenyl)-porphyrin (Zn-TBPP). b) Chemical structure of 4-methoxypyridine, a ligand known to interact with Zn metalloporphyrins through the N atom.…”
mentioning
confidence: 84%