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Updated: Dec 29, 2025

Multiscale Sampling of a Heterogeneous Water/Metal Catalyst Interface using Density Functional Theory and Force-Field Molecular Dynamics
Published on: April 12, 2019
Revealing Transient Shuttling Mechanism of Catalytic Ion Transport through Liquid-Liquid Interface
Ai Koizumi1, Hirofumi Tahara1, Tomonori Hirano1
1Department of Chemistry, Graduate School of Science , Tohoku University , Sendai 980-8578 , Japan.
Abstract:
Hard, hydrophilic ions that hardly transport over the water-oil interface by imposing external electric potential could undergo facile transport with a trace of ligand. Such phenomena, called "shuttling", are elucidated by microscopic investigation with molecular dynamics simulations. The catalytic role manifests itself in a 2-D free-energy surface within the nanometer range of the interface. The free-energy landscape clearly distinguishes the condition that the catalytic shuttling plays a vital role in the ion transport. The mechanism associated with transient complex formation at the interface is shown to be widely relevant to the ion kinetics and extends the conventional concept of facilitated ion transport.
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