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Aggregation-Induced Emission: The Whole Is More Brilliant than the Parts ¹²51Ò³ ÒýÎÄ313ƪ
Ju Mei, Yuning Hong, Jacky W. Y. Lam, Anjun Qin, Youhong Tang, and  Ben Zhong Tang*
Dr. J. Mei, Dr. Y. Hong, Dr. J. W. Y. Lam, Prof. B. Z. Tang
Department of Chemistry, HKUST Jockey Club Institute for Advanced Study, Division of Life Science,  
Institute of Molecular Functional Materials and Division of Biomedical Engineering,The Hong Kong University of Science & Technology (HKUST)
Clear Water Bay, Kowloon, Hong Kong,   China   
E-mail:  tangbenz@ust.hk   
Dr. Y. Hong, Dr. J. W. Y. Lam, Prof. B. Z. Tang
HKUST Shenzhen Institute, Hi-tech Park, Nansha, Shenzhen 518057,   China   
Prof. A. Qin, Prof. B. Z. Tang
Guangdong Innovative Research Team, SCUT¨CHKUST Joint Research Laboratory
State Key Laboratory of Luminescent Materials and Devices, South China University of Technology (SCUT), Guangzhou    51640  ,   China   
Dr. Y. Tang
Centre for NanoScale Science and Technology
Centre for Maritime Engineering, Control and Imaging, School of Computer Science, Engineering and Mathematics
Flinders University, South Australia    5042  ,   Australia   

¡° United we stand, divided we fall .¡±¨CAesop.
Aggregation-induced emission (AIE) refers to a photophysical phenomenon shown by a group of luminogenic materials that are non-emissive when they are dissolved in good solvents as molecules but become highly luminescent when they are clustered in poor solvents or solid state as aggregates. In this Review we summarize the recent progresses made in the area of AIE research. We conduct mechanistic analyses of the AIE processes, unify the restriction of intramolecular motions (RIM) as the main cause for the AIE effects, and derive RIM-based molecular engineering strategies for the design of new AIE luminogens (AIEgens). Typical examples of the newly developed AIEgens and their high-tech applications as optoelectronic materials, chemical sensors and biomedical probes are presented and discussed.Adv. Mater.×îÐÂ×ÛÊö£º¾Û¼¯ÓÕµ¼Ó«¹â ÌÆ±¾ÖÒԺʿ³öÆ·
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