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凝聚态科学:从结构到性质

Aggregate Science: From Structures to Properties.

作者信息

Zhang Haoke, Zhao Zheng, Turley Andrew T, Wang Lin, McGonigal Paul R, Tu Yujie, Li Yuanyuan, Wang Zhaoyu, Kwok Ryan T K, Lam Jacky W Y, Tang Ben Zhong

机构信息

Department of Chemistry, Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction and Institute for Advanced Study, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong, 999077, China.

HKUST-Shenzhen Research Institute, No. 9 Yuexing 1st Rd, South Area, Hi-tech Park, Nanshan, Shenzhen, 518057, China.

出版信息

Adv Mater. 2020 Sep;32(36):e2001457. doi: 10.1002/adma.202001457. Epub 2020 Jul 30.

Abstract

Molecular science entails the study of structures and properties of materials at the level of single molecules or small interacting complexes of molecules. Moving beyond single molecules and well-defined complexes, aggregates (i.e., irregular clusters of many molecules) serve as a particularly useful form of materials that often display modified or wholly new properties compared to their molecular components. Some unique structures and phenomena such as polymorphic aggregates, aggregation-induced symmetry breaking, and cluster excitons are only identified in aggregates, as a few examples of their exotic features. Here, by virtue of the flourishing research on aggregation-induced emission, the concept of "aggregate science" is put forward to fill the gaps between molecules and aggregates. Structures and properties on the aggregate scale are also systematically summarized. The structure-property relationships established for aggregates are expected to contribute to new materials and technological development. Ultimately, aggregate science may become an interdisciplinary research field and serves as a general platform for academic research.

摘要

分子科学涉及在单分子或分子间相互作用的小复合体层面上对材料的结构和性质进行研究。除了单分子和明确界定的复合体之外,聚集体(即许多分子的不规则聚集体)是一种特别有用的材料形式,与它们的分子组分相比,聚集体常常展现出经过改变的或全新的性质。一些独特的结构和现象,例如多晶型聚集体、聚集诱导的对称性破缺以及团簇激子,仅在聚集体中被发现,这是它们奇异特性的几个例子。在此,借助于对聚集诱导发光的蓬勃研究,提出了“聚集体科学”的概念,以填补分子与聚集体之间的空白。还系统地总结了聚集体尺度上的结构和性质。为聚集体建立的结构-性质关系有望推动新材料和技术的发展。最终,聚集体科学可能会成为一个跨学科研究领域,并作为学术研究的通用平台。

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