Handbook of Aggregation-Induced Emission, Volume 2

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The second volume of the ultimate reference on the science and applications of aggregation-induced emission  The Handbook of Aggregation-Induced Emission In 
, the editors address the design and synthesis of typical AIEgens that have made significant contributions to aggregation-induced emission research. Recent advances in the development of aggregation-induced emission systems are discussed and the book covers novel aggregation-induced emission systems in small molecule organogels, polymersomes, metal-organic coordination complexes and metal nanoclusters. Readers will also discover: 
A thorough introduction to the synthesis and applications of tetraphenylpyrazine-based AIEgens, AIEgens based on 9,10-distyrylanthracene , and the Salicylaldehyde Schiff base Practical discussions of aggregation-induced emission from the sixth main group and fluorescence detection of dynamic aggregation processes using AIEgens Coverage of cyclic triimidazole derivatives and the synthesis of multi-phenyl-substituted pyrrole based materials and their applications Perfect for academic researchers working on aggregation-induced emission, this set of volumes is also ideal for professionals and students in the fields of photophysics, photochemistry, materials science, optoelectronic materials, synthetic organic chemistry, macromolecular chemistry, polymer science, and biological sciences.

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Library of Congress Cataloging‐in‐Publication data applied for

Hardback (Volume 2): 9781119642985

Cover Design: Wiley

Cover Image: © Chad Baker/Getty Images

Pay our great respects to all the researchers who have contributed and are contributing to the study of Aggregation Induced Emission (AIE).

List of Contributors

Jan BalszuweitFaculty of Chemistry (Organic Chemistry) University of Duisburg‐Essen Essen, Germany

Sheshanath V. BhosaleSchool of Chemical Sciences Goa University, Taleigao Plateau Goa, India

Zhengxu CaiBeijing Key Laboratory of Construction Tailorable Advanced Functional Materials and Green Applications, School of Materials Science & Engineering Beijing Institute of Technology Beijing, PR China

Elena CariatiDepartment of Chemistry Università degli Studi di Milano Milan, Italy

Hui ChenChimie ParisTech PSL University CNRS Institut de Recherche de Chimie Paris Paris, France

Ming ChenCollege of Chemistry and Materials Science Jinan University Guangzhou, China

Yoshiki ChujoDepartment of Polymer Chemistry Graduate School of Engineering Kyoto University Katsura, Kyoto, Japan

Yuping DongBeijing Key Laboratory of Construction Tailorable Advanced Functional Materials and Green Applications School of Materials Science & Engineering Beijing Institute of Technology Beijing, PR China

Alessandra ForniInstitute of Sciences and Chemical Technologies “Giulio Natta” (SCITEC) of CNR Milan, Italy

Meng GaoNational Engineering Research Center for Tissue Restoration and Reconstruction Key Laboratory of Biomedical Engineering of Guangdong Province Key Laboratory of Biomedical Materials and Engineering of the Ministry of Education Innovation Center for Tissue Restoration and Reconstruction South China University of Technology Guangzhou, China

Masayuki GonDepartment of Polymer Chemistry Graduate School of Engineering Kyoto University Katsura, Kyoto, Japan

Rongrong HuState Key Laboratory of Luminescent Materials and Devices Guangdong Provincial Key Laboratory of Luminescence from Molecular Aggregates Center for Aggregation‐Induced Emission South China University of Technology Guangzhou, China

Xianglong HuMinistry of Education Key Laboratory of Laser Life Science and Guangdong Provincial Key Laboratory of Laser Life Science College of Biophotonics South China Normal University Guangzhou, China

Yuzhang HuangState Key Laboratory of Luminescent Materials and Devices Guangdong Provincial Key Laboratory of Luminescence from Molecular Aggregates Center for Aggregation‐Induced Emission South China University of Technology Guangzhou, China

Fuyuki ItoDepartment of Chemistry Institute of Education Shinshu University Nagano, Japan

Shunichiro ItoDepartment of Polymer Chemistry Graduate School of Engineering Kyoto University Katsura, Kyoto, Japan

Parameswar Krishnan IyerDepartment of Chemistry Centre for Nanotechnology Indian Institute of Technology Guwahati Guwahati, Assam, India

Ratan W. JadhavSchool of Chemical Sciences Goa University, Taleigao Plateau Goa, India

Lathe A. JonesCAMICSchool of Science RMIT University, Melbourne VIC, Australia

Sriram KanvahDepartment of Chemistry Indian Institute of Technology Gandhinagar Palaj, Gandhinagar, India

Jagadish KatlaDepartment of Chemistry Indian Institute of Technology Gandhinagar Palaj, Gandhinagar, India

Mohammad Al KobaisiSchool of Science Faculty of Science, Engineering and Technology Swinburne University of Technology Hawthorn, Australia

Beena KumariDepartment of Chemistry Indian Institute of Technology Gandhinagar, Palaj, Gandhinagar, India

Yunxiang LeiBeijing Key Laboratory of Construction Tailorable Advanced Functional Materials and Green Applications School of Materials Science & Engineering Beijing Institute of Technology Beijing, China

Kai LiHenan Key Laboratory of Crystalline Molecular Functional Materials Henan International Joint Laboratory of Tumor Theranostical Cluster Materials Green Catalysis Center College of Chemistry, Zhengzhou University Zhengzhou, China

Min‐Hui LiChimie ParisTech PSL University CNRS Institut de Recherche de Chimie Paris Paris, France Beijing Advanced Innovation Center for Soft Matter Science and Engineering Beijing University of Chemical Technology Beijing, China

Xia LingNational Engineering Research Center for Tissue Restoration and Reconstruction Key Laboratory of Biomedical Engineering of Guangdong Province Key Laboratory of Biomedical Materials and Engineering of the Ministry of Education Innovation Center for Tissue Restoration and Reconstruction South China University of Technology Guangzhou, China

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