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      Chiral Recognition and Resolution Based on Helical Polymers

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          Supramolecular Helical Systems: Helical Assemblies of Small Molecules, Foldamers, and Polymers with Chiral Amplification and Their Functions.

          In this review, we describe the recent advances in supramolecular helical assemblies formed from chiral and achiral small molecules, oligomers (foldamers), and helical and nonhelical polymers from the viewpoints of their formations with unique chiral phenomena, such as amplification of chirality during the dynamic helically assembled processes, properties, and specific functionalities, some of which have not been observed in or achieved by biological systems. In addition, a brief historical overview of the helical assemblies of small molecules and remarkable progress in the synthesis of single-stranded and multistranded helical foldamers and polymers, their properties, structures, and functions, mainly since 2009, will also be described.
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            Efficient Separation of Enantiomers Using Stereoregular Chiral Polymers.

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              Switchable enantioseparation based on macromolecular memory of a helical polyacetylene in the solid state.

              In the chromatographic separation of enantiomers the order of elution is determined by the strength of diasteromeric interactions between the components of the mixture and a chiral stationary phase. For analytical purposes, it is ideal to have the minor component elute first, whereas in the preparative mode a faster elution of the major component is desirable. Here we describe a stationary phase constructed from a polyacetylene that bears 2,2'-bisphenol-derived side chains in which chirality can be switched in the solid state prior to use. Both the macromolecular helicity of the polymer backbone and the axial chirality of the side chains can be switched in the solid state by interaction with a chiral alcohol, but importantly are maintained after removal of the chiral alcohol because of a memory effect. The chiral stationary phase thus prepared was used to separate the enantiomers of trans-stilbene oxide with the enantiomer elution order determined by the preseparation treatment.
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                Author and article information

                Journal
                Chinese Journal of Polymer Science
                Chin J Polym Sci
                Springer Science and Business Media LLC
                0256-7679
                1439-6203
                December 2021
                July 25 2021
                December 2021
                : 39
                : 12
                : 1521-1527
                Article
                10.1007/s10118-021-2615-y
                44d35b44-f4ef-42c9-a06d-af4d632b9795
                © 2021

                https://www.springer.com/tdm

                https://www.springer.com/tdm

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