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Photofunction‐Directed Coordination Molecular Engineering

Photofunction‐Directed Coordination Molecular Engineering Molecular engineering has emerged as a highly interdisciplinary field of study on function‐directed molecular design, material synthesis, and property optimization, accompanied by a deep understanding of the structure‐property relationship. In this review, our recent progress on the design and preparations of photofunctional metal complexes and related materials is summarized from the perspective of coordination molecular engineering. In particular, a series of cyclometalated diruthenium complexes with near‐infrared (NIR) electrochromic property have been synthesized by engineering the bridging ligand structures. A group of ruthenium‐amine conjugated complexes with multistage NIR electrochromism are obtained on the basis of a multicenter strategy. By engineering the ligand structures, a series of new ruthenium and platinum complexes are synthesized to show switchable luminescence in response to various stimuli. In addition, photoluminescent ruthenium, iridium, and platinum complexes are assembled to afford micro/nanocrystals with well‐defined morphology and luminescent properties. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Chinese Journal of Chemistry Wiley

Photofunction‐Directed Coordination Molecular Engineering

Chinese Journal of Chemistry , Volume 39 (3) – Mar 1, 2021

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References (35)

Publisher
Wiley
Copyright
© 2021 SIOC, CAS, Shanghai, & WILEY‐VCH GmbH
ISSN
1001-604X
eISSN
1614-7065
DOI
10.1002/cjoc.202000477
Publisher site
See Article on Publisher Site

Abstract

Molecular engineering has emerged as a highly interdisciplinary field of study on function‐directed molecular design, material synthesis, and property optimization, accompanied by a deep understanding of the structure‐property relationship. In this review, our recent progress on the design and preparations of photofunctional metal complexes and related materials is summarized from the perspective of coordination molecular engineering. In particular, a series of cyclometalated diruthenium complexes with near‐infrared (NIR) electrochromic property have been synthesized by engineering the bridging ligand structures. A group of ruthenium‐amine conjugated complexes with multistage NIR electrochromism are obtained on the basis of a multicenter strategy. By engineering the ligand structures, a series of new ruthenium and platinum complexes are synthesized to show switchable luminescence in response to various stimuli. In addition, photoluminescent ruthenium, iridium, and platinum complexes are assembled to afford micro/nanocrystals with well‐defined morphology and luminescent properties.

Journal

Chinese Journal of ChemistryWiley

Published: Mar 1, 2021

Keywords: ; ; ; ; ;

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