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Updated: Jan 17, 2026

Determining the Ice-binding Planes of Antifreeze Proteins by Fluorescence-based Ice Plane Affinity
Published on: January 15, 2014
Ice-Water Interfacial SERS/SEIRAS Reveals Novel Antifreeze Peptide Icing Inhibition Dynamics at the Molecular Level
Zhongxiang Ding1, Shixuan Yang2, Cheng Wang2
1School of Medicine, Anhui University of Science and Technology, Huainan 232001, China.
Abstract:
Unravelling ice-water interface water structure evolution is essential for understanding ice growth, but interfacial water is notoriously difficult to probe. We developed a Cryo-Raman/Infrared interaction profiling (CRIP/CIIP) technique to establish molecule-level correlations between ice growth and interfacial water structures. Antifreeze oligopeptides were localized on Au/Ag nanocubes (NCs) through mercaptobenzoic linker/Raman tags. Findings decrypt that the interfacial water structure is directly correlated to the ice recrystallization inhibition (IRI) activity of oligopeptides on NCs. With increasing density of oligopeptides, interfacial water is gradually subjected to a transition from 4-coordinated hydrogen-bonded water (4-HB·H2O) to 2-HB·H2O and π-hydrogen bond water (π-HB·H2O). This study finds π-HB·H2O acting as a new anti-icing force, with implications for designing IRI-active materials. Our CRIP technique enables the rapid recognition of IRI-active materials through benzene ring conformation allostery on NCs, establishing a general molecular strategy for screening antifreeze materials.
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