4.6 Article

Hybrid molecular dynamics and first-principles study on the work function of a Pt(111) electrode immersed in aqueous solution at room temperature

Journal

PHYSICAL REVIEW B
Volume 86, Issue 4, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.86.045450

Keywords

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Funding

  1. National Basic Research Program of China [2011CB808505, 2010CB923300, 2009CB930703]
  2. National Natural Science Foundation of China [20620130427, 20925311]
  3. Goran Gustafsson Foundation for Research in Natural Sciences and Medicine
  4. Swedish National Infrastructure for Computing (SNIC)

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With a combined molecular dynamics simulation and first-principles calculations, we have investigated a metal surface immersed in aqueous solution at room temperature using a Pt(111) electrode as an example. With the inclusion of thermal average effects at room temperature, the calculated averaged work function is found to be in good agreement with the experimental measurements. The electron redistribution at the interface of the topmost Pt(111) slab layer and the first water layer plays an important role in controlling the work function. A broad distribution of calculated work functions caused by the thermal motions of the dipolar solvents is obtained from statistical sampling, which implies that the chemical reactivity of a metal electrode in aqueous solution is a dynamic property at least in the nanoscale. Such a microscopic understanding helps to understand the behavior of complex electrochemical double layers.

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