On‐Stage and Behind‐the‐Scenes: Solvent‐Directed Structural Transformation and Optical Properties of Metal Clusters

Understanding the intrinsic relationship between structure conversion and property response is one of the central challenges in the design of functional materials. In recent years, atomically precise metal clusters, featuring highly tunable geometrical configurations and discrete electronic energy levels, have emerged as ideal model systems for elucidating structure-property correlations. Among various external stimuli that trigger structural transformations of metal clusters, solvents play a unique and active role: beyond serving as reaction or dissolution media, they can systematically induce diverse structural conversions of metal clusters and thereby profoundly modulate their optical properties. In view of the current lack of a unified theoretical framework connecting solvent-directed structural conversion with optical responses of metal clusters, this review first systematically summarizes the typical types of solvent-induced structural transformations in metal clusters. It then provides an in-depth analysis of the microscopic mechanisms underlying solvent-driven structural evolution and their intrinsic influence on optical properties. Finally, the fundamental issues, remaining challenges, and future perspectives in this emerging field are discussed. This review aims to provide a theoretical foundation and methodological guidance for solvent-controlled structural transformations and optical performance optimization of metal clusters.

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Publication Details

Journal
Advanced Materials
Published
2026-09-16
DOI
https://doi.org/10.1002/adma.75028
Primary Topic
Nanocluster Synthesis and Applications
Type
article
Field-Weighted Citation Impact
0.00

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article

On‐Stage and Behind‐the‐Scenes: Solvent‐Directed Structural Transformation and Optical Properties of Metal Clusters

Huixin Xiang, Chuanhao Yao, Ruyu Wang, Yong Yan et al.
Advanced Materials
Nanocluster Synthesis and Applications
article

On‐Stage and Behind‐the‐Scenes: Solvent‐Directed Structural Transformation and Optical Properties of Metal Clusters

Huixin Xiang, Chuanhao Yao, Ruyu Wang, Yong Yan, Jiaqi Sun, Wei Huang, Shufen Hu
article en

Abstract

Understanding the intrinsic relationship between structure conversion and property response is one of the central challenges in the design of functional materials. In recent years, atomically precise metal clusters, featuring highly tunable geometrical configurations and discrete electronic energy levels, have emerged as ideal model systems for elucidating structure-property correlations. Among various external stimuli that trigger structural transformations of metal clusters, solvents play a unique and active role: beyond serving as reaction or dissolution media, they can systematically induce diverse structural conversions of metal clusters and thereby profoundly modulate their optical properties. In view of the current lack of a unified theoretical framework connecting solvent-directed structural conversion with optical responses of metal clusters, this review first systematically summarizes the typical types of solvent-induced structural transformations in metal clusters. It then provides an in-depth analysis of the microscopic mechanisms underlying solvent-driven structural evolution and their intrinsic influence on optical properties. Finally, the fundamental issues, remaining challenges, and future perspectives in this emerging field are discussed. This review aims to provide a theoretical foundation and methodological guidance for solvent-controlled structural transformations and optical performance optimization of metal clusters.

Advanced Materials
Fujian Normal University (CN), Northwestern Polytechnical University (CN), Beijing University of Chemical Technology (CN)
National Natural Science Foundation of China
Openalex Percentile: Top 24%
Nanocluster Synthesis and Applications
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