Yokota Shingo, Ueno Tomotsugu, Kitaoka Takuya, Wariishi Hiroyuki
Department of Forest and Forest Products Sciences, Graduate School of Bioresource and Bioenvironmental Sciences, Kyushu University, Fukuoka 812-8581, Japan.
Carbohydr Res. 2007 Dec 10;342(17):2593-8. doi: 10.1016/j.carres.2007.08.018. Epub 2007 Aug 31.
Individual cellulose macromolecules were successfully visualized on a highly oriented pyrolytic graphite (HOPG) surface by tapping-mode atomic force microscopy under ambient condition. Monomolecular-level dispersion of cellulose chains was achieved through the momentary contact of dilute cellulose/cupri-ethylenediamine (Cu-ED) solution onto the HOPG substrate. Both concentrations of cellulose and Cu-ED provided critical impacts on the topographical images. Single cellulose chains with molecular height of ca. 0.55 nm could be observed under the optimal conditions, showing rigid molecular rods with a unique morphology of hexagonal regularity. It was strongly suggested that the cellulose chains were aligned along the HOPG crystal lattice through a specific attraction, possibly due to a CH-pi interaction between the axial plane of cellulose and the HOPG pi-conjugated system. These phenomena would imply the potential applications of an HOPG substrate for not only nano-level imaging, but also for molecular alignment of cellulose and other structural polysaccharides.
在环境条件下,通过轻敲模式原子力显微镜成功地在高度取向热解石墨(HOPG)表面上观察到了单个纤维素大分子。通过将稀释的纤维素/铜乙二胺(Cu-ED)溶液瞬间接触到HOPG基底上,实现了纤维素链的单分子水平分散。纤维素和Cu-ED的浓度对形貌图像都有重要影响。在最佳条件下,可以观察到分子高度约为0.55 nm的单个纤维素链,呈现出具有独特六边形规则形态的刚性分子棒。强烈表明纤维素链通过特定吸引力沿HOPG晶格排列,这可能是由于纤维素轴向平面与HOPG π共轭体系之间的CH-π相互作用。这些现象意味着HOPG基底不仅在纳米级成像方面,而且在纤维素和其他结构多糖的分子排列方面都具有潜在应用。