Department of Molecular Design and Engineering, Graduate School of Engineering, Nagoya University, Chikusa-ku, Japan.
J Am Chem Soc. 2012 May 23;134(20):8718-28. doi: 10.1021/ja303204m. Epub 2012 May 10.
Optically active, amphiphilic poly(meta-phenylene ethynylene)s (PPEa) bearing L- or D-alanine-derived oligo(ethylene glycol) side chains connected to the backbone via amide linkages were prepared by microwave-assisted polycondensation. PPEa's exhibited an intense Cotton effect in the π-conjugated main-chain chromophore regions in various polar and nonpolar organic solvents due to a predominantly one-handed helical conformation stabilized by an intramolecular hydrogen-bonding network between the amide groups of the pendants. The stable helical structure was retained in the bulk and led to supramolecular column formation from stacked helices in oriented polymer films as evidenced by X-ray diffraction. Atomic force microscopy was used to directly visualize the helical structures of the polymers in two-dimensional crystalline layers with molecular resolution, and, for the first time, their absolute helical senses could unambiguously be determined.
具有手性的两亲性聚(间苯乙炔)(PPEa),通过酰胺键连接到主链上,带有 L-或 D-丙氨酸衍生的低聚(乙二醇)侧链,通过微波辅助缩聚法制备。PPEa 在各种极性和非极性有机溶剂的共轭主链发色团区域表现出强烈的 Coton 效应,这是由于侧链酰胺基团之间的分子内氢键网络稳定了主要的单手螺旋构象。在本体中,稳定的螺旋结构得以保留,并导致取向聚合物膜中堆叠螺旋形成超分子柱,这一点可以通过 X 射线衍射得到证明。原子力显微镜用于以分子分辨率直接观察聚合物在二维结晶层中的螺旋结构,并且首次可以明确确定其绝对螺旋手性。