Recent Progress in Azobenzene‐Based Supramolecular Materials and Applications

Author:

Younis Muhammad1,Ahmad Sadia1,Atiq Atia2,Amjad Farooq Muhammad3,Huang Mu‐Hua1,Abbas Manzar45ORCID

Affiliation:

1. School of Materials Science and Engineering Beijing Institute of Technology No. 5, Zhongguancun South Street Beijing 100081 China

2. Division of Science and Technology Department of Physics University of Education 54770 Lahore Pakistan

3. Department of Polymer Science School of Chemistry and Chemical Engineering Shanghai Jiao Tong University Shanghai 200240 P.R. China

4. Department of Chemistry Khalifa University of Science and Technology P.O. Box 127788 Abu Dhabi UAE

5. Advanced Materials Chemistry Center (AMCC) Khalifa University of Science and Technology P.O. Box 127788 Abu Dhabi UAE

Abstract

AbstractAzobenzene‐containing small molecules and polymers are functional photoswitchable molecules to form supramolecular nanomaterials for various applications. Recently, supramolecular nanomaterials have received enormous attention in material science because of their simple bottom‐up synthesis approach, understandable mechanisms and structural features, and batch‐to‐batch reproducibility. Azobenzene is a light‐responsive functional moiety in the molecular design of small molecules and polymers and is used to switch the photophysical properties of supramolecular nanomaterials. Herein, we review the latest literature on supramolecular nano‐ and micro‐materials formed from azobenzene‐containing small molecules and polymers through the combinatorial effect of weak molecular interactions. Different classes including complex coacervates, host‐guest systems, co‐assembled, and self‐assembled supramolecular materials, where azobenzene is an essential moiety in small molecules, and photophysical properties are discussed. Afterward, azobenzene‐containing polymers‐based supramolecular photoresponsive materials formed through the host‐guest approach, polymerization‐induced self‐assembly, and post‐polymerization assembly techniques are highlighted. In addition to this, the applications of photoswitchable supramolecular materials in pH sensing, and CO2 capture are presented. In the end, the conclusion and future perspective of azobenzene‐based supramolecular materials for molecular assembly design, and applications are given.

Funder

Natural Science Foundation of Beijing Municipality

National Natural Science Foundation of China

Publisher

Wiley

Subject

Materials Chemistry,General Chemical Engineering,Biochemistry,General Chemistry

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