Molecular-resolution imaging of ice crystallized from liquid water by cryogenic liquid-cell TEM

J Jingshan S. Du S Suvo Banik (Department of Mechanical and Industrial Engineering, University of Illinois) H Henry Chan (Nanoscience and Technology Division) B Birk Fritsch Y Ying Xia (Department of Materials Science and Engineering) A Ajay S. Karakoti A Andreas Hutzler S Subramanian K. R. S. Sankaranarayanan (Department of Mechanical and Industrial Engineering) J James J. De Yoreo (Department of Materials Science and Engineering)

Abstract

Abstract Despite the ubiquity of ice, a molecular-resolution image of nanoscopic defects or microstructures in ice crystallized from liquid water has never been obtained. This is mainly due to the difficulties in preparing and preserving crystalline ice samples that can survive under high-resolution imaging conditions. Here, we report the stabilization and Å-resolution electron imaging of ice Ih crystallized from liquid water by developing cryogenic liquid-cell transmission electron microscopy (CRYOLIC-TEM). We combine lattice mapping with molecular dynamics simulations to reveal that ice formation is highly tolerant to nanoscale defects such as misoriented subdomains and trapped gas bubbles, which are stabilized by molecular-scale structural motifs. Importantly, bubble surfaces adopt low-energy nanofacets and create negligible strain fields in the surrounding crystal. These bubbles can dynamically nucleate, grow, migrate, dissolve, and coalesce under electron irradiation and be monitored in situ near a steady state. This work improves our understanding of water crystallization behaviors at a molecular spatial resolution.

Article Details

Volume / Issue Vol. 16, Issue 1
Published September 25, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (9)

J

Jingshan S. Du

S

Suvo Banik

Department of Mechanical and Industrial Engineering, University of Illinois

H

Henry Chan

Nanoscience and Technology Division

B

Birk Fritsch

Y

Ying Xia

Department of Materials Science and Engineering

A

Ajay S. Karakoti

A

Andreas Hutzler

S

Subramanian K. R. S. Sankaranarayanan

Department of Mechanical and Industrial Engineering

J

James J. De Yoreo

Department of Materials Science and Engineering