Ruokolainen J, Makinen R, Torkkeli M, Makela T, Serimaa R, Brinke G, Ikkala O
J. Ruokolainen and O. Ikkala, Department of Engineering Physics and Mathematics, Helsinki University of Technology, FIN-02015 HUT, Espoo, Finland. R. Makinen, M. Torkkeli, R. Serimaa, Department of Physics, University of Helsinki, Post Office B.
Science. 1998 Apr 24;280(5363):557-60. doi: 10.1126/science.280.5363.557.
It was demonstrated that polymeric supramolecular nanostructures with several length scales allow straightforward tailoring of hierarchical order-disorder and order-order transitions and the concurrent switching of functional properties. Poly(4-vinyl pyridine) (P4VP) was stoichiometrically protonated with methane sulfonic acid (MSA) to form P4VP(MSA)1.0, which was then hydrogen-bonded to pentadecylphenol. Microphase separation, re-entrant closed-loop macrophase separation, and high-temperature macrophase separation were observed. When MSA and pentadecylphenol were complexed to the P4VP block of a microphase-separated diblock copolymer poly[styrene-block-(4-vinyl pyridine)], self-organized structures-in-structures were obtained whose hierarchical phase transitions can be controlled systematically. This microstructural control on two different length scales (in the present case, at 48 and 350 angstroms) was then used to introduce temperature-dependent transitions in electrical conductivity.
结果表明,具有多种长度尺度的聚合物超分子纳米结构能够直接定制分级有序-无序和有序-有序转变以及功能特性的同时切换。聚(4-乙烯基吡啶)(P4VP)与甲磺酸(MSA)进行化学计量质子化反应,形成P4VP(MSA)1.0,然后将其与十五烷基苯酚形成氢键。观察到微相分离、再入闭环宏观相分离和高温宏观相分离。当MSA和十五烷基苯酚与微相分离的二嵌段共聚物聚[苯乙烯-嵌段-(4-乙烯基吡啶)]的P4VP嵌段络合时,获得了结构中包含结构的自组装结构,其分级相变可以系统地控制。然后利用这种在两个不同长度尺度(在本案例中为48和350埃)上的微观结构控制来引入电导率随温度的转变。