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Two-Dimensional Surface Chirality Control by Solvent-Induced Helicity Inversion of a Helical Polyacetylene on Graphite
256
Citations
6
References
2006
Year
Materials ScienceAtomic Force MicroscopyEngineeringHelical PolyacetyleneSurface ChiralitySelf-assemblyPolymer ScienceNatural SciencesMolecular BiologyGrapheneSolvent-induced Helicity InversionMacromolecular SystemChemistryMacromolecular ArchitectureBiophysicsPolymer ChemistryPolar Solvent
We report the direct evidence for the macromolecular helicity inversion of a helical poly(phenylacetylene) bearing l- or d-alanine pendants with a long alkyl chain in different solvents by atomic force microscopy observations of the diastereomeric helical structures. The diastereomeric helical poly(phenylacetylene)s induced in polar and nonpolar solvents self-assembled into ordered, two-dimensional helix bundles with controlled molecular packing, helical pitch, and handedness on graphite upon exposure of each solvent. The macromolecular helicity deposited on graphite from a polar solvent further inverted to the opposite handedness by exposure to a specific nonpolar solvent, and these changes in the surface chirality based on the inversion of helicity could be visualized by atomic force microscopy with molecular resolution, and the results were quantified by X-ray diffraction of the oriented liquid crystalline, diastereomeric helical polymer films.
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