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Biogenetic Chiral Deep Eutectic Solvents that Produce Self-Assembled Chiroptical Materials. | LitMetric

Biogenetic Chiral Deep Eutectic Solvents that Produce Self-Assembled Chiroptical Materials.

Angew Chem Int Ed Engl

Key Laboratory of Colloid and Interface Chemistry of Ministry of Education, School of Chemistry and Chemical Engineering, Shandong University, Jinan 250100, People's Republic of China.

Published: November 2023

AI Article Synopsis

  • Deep eutectic solvents (DESs) exhibit unique properties that set them apart from ionic liquids and traditional solvents, specifically in their ability to interact with solutes during the synthesis of chiral materials.
  • This study focuses on the creation of bio-derived chiral DESs using choline chloride or cyclodextrin and natural chiral acids, which serve as effective chiral matrices to enhance chirality transfer in the synthesis process.
  • The research highlights how the structural design of DESs can strengthen their binding to chiral components, resulting in significant chirality amplification in nanoassemblies through spontaneous symmetry breaking, providing insights into the development of DES-based chiral materials.

Article Abstract

Deep eutectic solvents (DESs) show particular properties compared to ionic liquids and other traditional organic solvents. Controlled synthesis of chiral materials in DESs is unprecedented due to the complex interplays between DESs and solutes. In this work, all bio-derived chiral DESs were prepared using choline chloride or cyclodextrin as hydrogen bonding acceptors and natural chiral acids as donors, which performed as chiral matrices for the rational synthesis of chiroptical materials by taking advantage of the efficient chirality transfer between the DESs and solutes. In a very selective manner, building units with molecular pockets could facilitate strong binding affinity towards chiral acid components of DESs disregarding the presence of competitive hydrogen bonding acceptors. Chirality transfer from DESs to nanoassemblies leads to chirality amplification in the presence of minimal amounts of entrapped chiral acids, thanks to the spontaneous symmetry breaking of solutes during aggregation. This work utilizes chiral DESs to control supramolecular chirality, and illustrates the structural basis for the fabrication of DES-based chiral materials.

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Source
http://dx.doi.org/10.1002/anie.202313536DOI Listing

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