Department of Chemistry and Biochemistry, Graduate School of Engineering, Kyushu University, Fukuoka 812-8581, Japan.
Org Biomol Chem. 2011 Jan 7;9(1):146-53. doi: 10.1039/c0ob00407c. Epub 2010 Nov 3.
Creation of higher-ordered polymeric architectures composed of alternative assemblies of single-walled carbon nanotubes (SWNTs) and fibrous porphyrin J-aggregates can be easily achieved utilizing the cationic semi-artificial polysaccharide which can act not only as a tubular host for SWNTs but also as a one-dimensional template for porphyrin molecules. This new class of hierarchical polymer assembly is formed, for the first time, by the mutual template effect of two components, i.e., the cationic SWNT complexes and the anionic porphyrin supramolecular nanofibers. In the present system, the self-assembling behaviors of the SWNT complexes as well as the final properties of the SWNT nanoarchitectures are strongly affected by the packing mode of porphyrin molecules on the cationic semi-artificial polysaccharide. Furthermore, we have confirmed that the light energy captured by the porphyrin J-aggregates is effectively transferred to SWNTs.
利用阳离子半合成多糖,可以轻松地将由单壁碳纳米管(SWNTs)和纤维状卟啉 J-聚集体的交替组装组成的更高阶聚合结构构建出来。这种阳离子半合成多糖不仅可以作为 SWNTs 的管状主体,还可以作为卟啉分子的一维模板。这种新型的层次聚合物组装体,首次由两个组分的相互模板效应形成,即阳离子 SWNT 配合物和阴离子卟啉超分子纳米纤维。在本体系中,SWNT 配合物的自组装行为以及 SWNT 纳米结构的最终性质强烈受到卟啉分子在阳离子半合成多糖上的堆积方式的影响。此外,我们已经证实,被卟啉 J-聚集体捕获的光能有效地转移到 SWNTs 上。