Probing Phase Diagrams of Ordered Two-Dimensional Ice

Fuente: arXiv
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Main Authors: Wu, Bingzheng, Wu, Jianming, Duan, Sai, Xu, Xin
Format: Preprint
Published: 2025
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author Wu, Bingzheng
Wu, Jianming
Duan, Sai
Xu, Xin
author_facet Wu, Bingzheng
Wu, Jianming
Duan, Sai
Xu, Xin
contents Water, a ubiquitous and fundamental substance, plays a critical role across a wide range of disciplines from physics and chemistry to biology and engineering. Despite theoretical predictions of several phases of two-dimensional (2D) ice confined between idealized hydrophobic walls, experimental validation has been limited to the square phase, whose structural origin remains controversial. Here, we propose a realistic nanoconfinement setup using wide-bandgap hexagonal boron nitride (h-BN) as the capping layer and Cu(111) as the substrate. This protocol enables scanning tunneling microscope (STM) to resolve the atomic-scale arrangement of water molecules beneath the h-BN layer, overcoming the limitations of conventional techniques. Simulated STM images unambiguously identify all ordered flat 2D ice phases, as well as coexisting phases, and effectively distinguish them from potential contaminants. These findings establish a robust framework for experiment to systematically probe the phase structures of 2D ice, opening an avenue for studying nanoconfined water under ambient conditions.
format Preprint
id arxiv_https___arxiv_org_abs_2510_07717
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Probing Phase Diagrams of Ordered Two-Dimensional Ice
Wu, Bingzheng
Wu, Jianming
Duan, Sai
Xu, Xin
Materials Science
Mesoscale and Nanoscale Physics
Applied Physics
Water, a ubiquitous and fundamental substance, plays a critical role across a wide range of disciplines from physics and chemistry to biology and engineering. Despite theoretical predictions of several phases of two-dimensional (2D) ice confined between idealized hydrophobic walls, experimental validation has been limited to the square phase, whose structural origin remains controversial. Here, we propose a realistic nanoconfinement setup using wide-bandgap hexagonal boron nitride (h-BN) as the capping layer and Cu(111) as the substrate. This protocol enables scanning tunneling microscope (STM) to resolve the atomic-scale arrangement of water molecules beneath the h-BN layer, overcoming the limitations of conventional techniques. Simulated STM images unambiguously identify all ordered flat 2D ice phases, as well as coexisting phases, and effectively distinguish them from potential contaminants. These findings establish a robust framework for experiment to systematically probe the phase structures of 2D ice, opening an avenue for studying nanoconfined water under ambient conditions.
title Probing Phase Diagrams of Ordered Two-Dimensional Ice
topic Materials Science
Mesoscale and Nanoscale Physics
Applied Physics
url https://arxiv.org/abs/2510.07717