4.6 Article

In Situ Electrochemical, Electrochemical Quartz Crystal Microbalance, Scanning Tunneling Microscopy, and Surface X-ray Scattering Studies on Ag/AgCl Reaction at the Underpotentially Deposited Ag Bilayer on the Au(111) Electrode Surface

期刊

JOURNAL OF PHYSICAL CHEMISTRY C
卷 115, 期 25, 页码 12471-12482

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jp2010502

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资金

  1. Japan Society of Promotion of Science (JSPS) [18205016]
  2. World Premier International Research Center (WPI) Initiative on Materials Nanoarchitectonics (MANA) from Ministry of Education, Culture, Sports, Science, and Technology (MEXT), Japan
  3. Grants-in-Aid for Scientific Research [23550001, 23550009] Funding Source: KAKEN

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Ag/AgCl reaction at the Ag bilayer, which was under-potentially prepared on a Au(111) surface, was investigated using electrochemical quartz crystal microbalance (EQCM), scanning tunneling microscopy (STM), surface X-ray scattering (SXS), and electrochemical techniques. When the potential was scanned positively from -200 mV, the Cl- ion was adsorbed on the Au(111) electrode surface around 0 mV, and then the phase transition of the adsorbed Cl- ion layer from random orientation to (root 3 x root 3) structure took place at around +130 mV. The Ag bilayer and Cl- ions were oxidatively reacted to form the AgCl monolayer with (root 13 x root 13)R13.9 degrees structure around +200 mV, accompanied with the formation of AgCl monocrystalline clusters on the AgCl monolayer surface. The structure of the AgCl monolayer on the Au(111) surface was changed from (root 13 x root 13)R13.9 degrees structure to (4 x 4) structure around +500 mV. When the potential was scanned back negatively, the AgCl monolayer was electrochemically reduced, and a Ag monolayer, not a bilayer, was formed on the Au(111) surface. In the subsequent potential cycles, the structural change between the Ag monolayer and the AgCl monolayer was reversibly observed. All oxidative structural changes were much slower than the reductive ones.

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