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Low-Dimensional and Confined Ice AITranslate

zhejiang university; zhejiang university; zhejiang university; zhejiang university; jiaxing institute of zhejiang university; jiaxing institute of zhejiang university
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Publisher: Elsevier
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Abstract AITranslate

Owing to its unique structure, morphology, and crystal quality, low-dimensional (L-D) ice has attracted increasing attention in recent years. With a size (at least in one dimension) between that of a single water molecule and a snowflake, L-D ice does not only appear as an intermediate state during the dimensional change but can also manifest extraordinary characteristics, from its molecular structures to its physical properties, which offer exciting opportunities for a better understanding and utilization of ice. In this article, we start with a brief introduction to the crystal growth, structure, and typical characterization techniques of ice and then review recent progress in the study of crystal growth, molecular structures, phase morphologies, and physical properties of zero-, one-, and two-dimensional (0-, 1-, and 2D) ice. Extraordinary behaviors of ice in low dimensions and extreme conditions are highlighted. Finally, the future outlook for the physical study and technological applications of L-D ice is briefly discussed.

KeyWords AITranslate

ice lowdimensional structure crystal growth characterization morphology interface optical properties mechanical properties
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Basic Information:

DOI:https://doi.org/10.1146/annurev-matsci-080921-101821

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Citation Information:

Owing to its unique structure, morphology, and crystal quality, low-dimensional (L-D) ice has attracted increasing attention in recent years. With a size (at least in one dimension) between that of a single water molecule and a snowflake, L-D ice does not only appear as an intermediate state during the dimensional change but can also manifest extraordinary characteristics, from its molecular structures to its physical properties, which offer exciting opportunities for a better understanding and utilization of ice. In this article, we start with a brief introduction to the crystal growth, structure, and typical characterization techniques of ice and then review recent progress in the study of crystal growth, molecular structures, phase morphologies, and physical properties of zero-, one-, and two-dimensional (0-, 1-, and 2D) ice. Extraordinary behaviors of ice in low dimensions and extreme conditions are highlighted. Finally, the future outlook for the physical study and technological applications of L-D ice is briefly discussed.

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GB/T 7714-2015 [1] Bowen Cui, Peizhen Xu, Xiangzheng Li, et al. Annual Review of Materials Research, 2023(53). DOI:10.1146/annurev-matsci-080921-101821.
MLA [1] Bowen Cui, et al., Annual Review of Materials Research, no. 53, 2023, https://doi.org/10.1146/annurev-matsci-080921-101821.
APA [1] Bowen Cui, Peizhen Xu, Xiangzheng Li, Kailong Fan, Xin Guo, & Limin Tong. (2023). Annual Review of Materials Research(53). https://doi.org/10.1146/annurev-matsci-080921-101821
IEEE [1] Bowen Cui, Peizhen Xu, Xiangzheng Li, Kailong Fan, Xin Guo, and Limin Tong, Annual Review of Materials Research, no. 53, 2023, doi: 10.1146/annurev-matsci-080921-101821. keywords: {ice;lowdimensional structure;crystal growth;characterization;morphology;interface;optical properties;mechanical properties}