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Development of chiral functional materials based on natural chiral compounds
by
Sogawa, Hiromitsu
in
Amino acids
/ Functional groups
/ Functional materials
/ Hydrogen bonding
/ Optical activity
/ Polyacetylene
/ Polymers
/ Sugar
2022
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Do you wish to request the book?
Development of chiral functional materials based on natural chiral compounds
by
Sogawa, Hiromitsu
in
Amino acids
/ Functional groups
/ Functional materials
/ Hydrogen bonding
/ Optical activity
/ Polyacetylene
/ Polymers
/ Sugar
2022
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Development of chiral functional materials based on natural chiral compounds
Journal Article
Development of chiral functional materials based on natural chiral compounds
2022
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Overview
Optically active polymers and supramolecules that form well-defined assemblies and architectures are important materials with a wide range of applications. Among the variety of chiral building blocks for the preparation of optically active functional materials, amino acids and sugars stand out because of their versatile structures and functional groups. In these chiral units, intra- and intermolecular noncovalent interactions, such as hydrogen bonding and π-stacking, play significant roles in the generation of smart functions. This review summarizes the fabrication and functions of chiral conjugated polyacetylenes and polyarylene ethynylenes and chiral supramolecules based on these natural chiral compounds.Optically active polymers and supramolecules that form well-defined architectures are important materials with a wide range of applications. Amino acids and sugars are great candidates for the preparation of optically active functional materials because of their versatile structures and functional groups. In these chiral units, intra- and intermolecular noncovalent interactions play significant roles in the generation of smart functions. In this focus review, the author reviews his recent studies related to the fabrication and functions of chiral conjugated polymers and chiral supramolecules based on these natural chiral compounds.
Publisher
Nature Publishing Group
Subject
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