Related Experiment Video
Updated: Jun 6, 2025

A Microfluidic Approach for the Study of Ice and Clathrate Hydrate Crystallization
Published on: August 18, 2022
Intact water adsorption on Co(0001) at 100 K: transition from ordered bilayer to amorphous ice structures
Ping Yi1, Yalong Jiang1, Yitian Cao1
1School of Physics, Hangzhou Normal University, Hangzhou, Zhejiang 311121, China. phymaohy@hznu.edu.cn.
Abstract:
While cobalt metal is recognized as a versatile catalyst in various chemical reactions, such as Fischer-Tropsch synthesis, limited attention has been paid to understanding the detailed adsorptive interactions between water molecules and cobalt metal. In this study, we investigated the adsorption of water molecules on Co(0001) at 100 K using infrared reflection adsorption spectroscopy and low-energy electron diffraction. We experimentally revealed, for the first time, that D2O adsorbed intact on the Co(0001) surface forms hexamer islands with coexisting D-up and D-down geometries, in line with the "ice bilayer" model. Upon completion of the first adlayer, a partially ordered (√3 × √3)R30° water bilayer structure is established, featuring coexisting D-up and D-down domains in a ratio of approximately 2 : 3. This results in a surface with mixed hydrophilic and hydrophobic regions. As a second adlayer grows, water molecules preferentially adsorb on the D-up domains before distributing onto the D-down domains. The adsorption of the second adlayer causes a partial disordering of the first water adlayer underneath, resulting in the transition from an ordered bilayer to disordered layer structures. Further increases in water coverage led to an amorphous ice structure.
More Related Videos
Related Concept Videos
Phase Diagrams
Phase Transitions: Sublimation and Deposition
States of Water
Water freezes when the intermolecular forces are greater than the kinetic energy. Unlike most other substances, water is less dense in its solid state than in its liquid state. This is because each water molecule can form...
Phase Transitions: Vaporization and Condensation
Classifying Matter by State
Phase Transitions: Melting and Freezing

