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Published on: July 27, 2022
Chiral transfer in coordination complexes: towards molecular materials.
1Sciences Chimiques de Rennes, UMR 6226, CNRS-Université de Rennes 1, Campus de Beaulieu, Rennes Cedex, 35042, France. jeanne.crassous@univ-rennes1.fr
This review explores coordination complexes that efficiently transfer chirality, controlling molecular structure and function. These chiral materials are vital for applications in luminescence, sensing, and magnetism.
Area of Science:
- Coordination Chemistry
- Materials Science
- Stereochemistry
Background:
- Chirality is crucial for molecular function and properties.
- Controlling stereochemistry in coordination complexes is challenging.
- Chiral transfer in molecular assemblies is key for advanced materials.
Purpose of the Study:
- To review coordination complexes with efficient chiral transfer.
- To present general features controlling chirality transmission.
- To highlight applications in functional chiral materials.
Main Methods:
- Critical review of existing literature.
- Analysis of coordination complexes exhibiting chiral transfer.
- Categorization of materials based on function.
Main Results:
- Examples of efficient chiral transfer in metal centers and molecular assemblies.
- General principles governing chirality transmission are outlined.
- Diverse applications demonstrated, including luminescent materials, MOFs, sensors, and magnets.
Conclusions:
- Coordination complexes offer versatile platforms for chiral transfer.
- Understanding chirality transmission enables the design of functional materials.
- This field holds significant potential for developing advanced chiroptical and magnetic materials.
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