Sakurai Shin-ichiro, Okoshi Kento, Kumaki Jiro, Yashima Eiji
Yashima Super-structured Helix Project, Exploratory Research for Advanced Technology (ERATO), Japan Science and Technology Agency (JST), 101 Creation Core Nagoya, Shimoshidami, Moriyama-ku, Nagoya 463-0003, Japan.
J Am Chem Soc. 2006 May 3;128(17):5650-1. doi: 10.1021/ja061238b.
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.
我们通过对非对映体螺旋结构的原子力显微镜观察,报道了在不同溶剂中带有长烷基链的 l- 或 d- 丙氨酸侧基的螺旋状聚(苯乙炔)大分子螺旋性反转的直接证据。在极性和非极性溶剂中诱导形成的非对映体螺旋状聚(苯乙炔),在每种溶剂暴露后,会在石墨上自组装成有序的二维螺旋束,其分子堆积、螺旋间距和手性均得到控制。从极性溶剂沉积在石墨上的大分子螺旋性,通过暴露于特定的非极性溶剂会进一步反转至相反的手性,并且基于螺旋性反转的表面手性变化可以通过具有分子分辨率的原子力显微镜可视化,结果通过取向液晶、非对映体螺旋聚合物薄膜的 X 射线衍射进行量化。