Hagopian Arthur, Filhol Jean-Sébastien, Binninger Tobias
Leiden Institute of Chemistry, Leiden University, Leiden 2333CC, The Netherlands.
ICGM, CNRS, University of Montpellier, Montpellier 34293, France.
J Chem Theory Comput. 2025 Aug 12;21(15):7636-7647. doi: 10.1021/acs.jctc.5c00814. Epub 2025 Jul 24.
The molecular structure of water has profound influence on electron transfer and redox processes at metal-water interfaces. While ab initio molecular dynamics simulations provide an accurate description of the interfacial structure, the respective computational cost is often prohibitive. Static simulations using a few ordered water layers can serve as a pragmatic alternative maintaining an explicit description of molecular interactions at an affordable computational cost. We here study the coupling between electronic and structural degrees of freedom at ferroelectrically ordered metal-water interfaces. With increasing number of ice-like water layers, we observe a long-range transfer of electrons between the metal's Fermi level and HOMO/LUMO states of the outermost water molecules, mediated by ordered solvent dipole layers. Our findings reveal limitations of the applicability of the ordered interface model and reveal a strong coupling between ferroelectric ordering and long-range (auto)redox phenomena at dipolar solvent structures, shedding new light onto the long-standing question on the existence and stability of ferroelectric ice. Implications for the activation of water molecules in electrocatalytic reactions at charged metal-water interfaces are suggested.
水的分子结构对金属 - 水界面处的电子转移和氧化还原过程有着深远影响。虽然从头算分子动力学模拟能够精确描述界面结构,但其相应的计算成本往往过高。使用少数有序水层的静态模拟可以作为一种实用的替代方法,以可承受的计算成本维持对分子相互作用的明确描述。我们在此研究铁电有序金属 - 水界面处电子与结构自由度之间的耦合。随着类冰状水层数量的增加,我们观察到金属费米能级与最外层水分子的 HOMO/LUMO 态之间存在由有序溶剂偶极层介导的长程电子转移。我们的研究结果揭示了有序界面模型适用性的局限性,并揭示了铁电有序与偶极溶剂结构处的长程(自)氧化还原现象之间的强耦合,为关于铁电冰的存在和稳定性这一长期问题提供了新的见解。文中还提出了对带电金属 - 水界面电催化反应中水分子活化的影响。