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A π-gel scaffold for assembling fullerene to photoconducting supramolecular rods

机译:用于将富勒烯组装到光导超分子棒的π凝胶支架

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摘要

Nonequilibrium self-assembly of molecules holds a huge prospect as a tool for obtaining new-generation materials for future applications. Crystallization of neutral molecules within a supramolecular gel matrix is one example in which two nonequilibrium processes occur orthogonal to each other. On the other hand, electronically interacting donor-acceptor two-component systems are expected to form phase-miscible hybrid systems. Contrary to the expectation, we report the behavior of a π-gel, derived from oligo(p-phenylenevinylene), OPVA, as a scaffold for the phase separation and crystallization of fullerene (C60) to supramolecular rods with increased transient photoconductivity (φƩμmax = 2.4 × 10−4 cm2 V−1 s−1). The C60 supramolecular rods in the π-gel medium exhibited high photocurrent in comparison to C60 loaded in a non–π-gel medium. This finding provides an opportunity for large-scale preparation of micrometer-sized photoconducting rods of fullerenes for device application.
机译:分子的非平衡自组装作为获得用于未来应用的新一代材料的工具具有广阔的前景。超分子凝胶基质内中性分子的结晶是一个实例,其中两个非平衡过程彼此正交发生。另一方面,电子相互作用的供体-受体两组分系统有望形成相混溶的混合系统。与预期相反,我们报道了衍生自低聚对苯乙撑乙烯(OPVA)的π-凝胶的行为,该结构用于富勒烯(C60)相分离和结晶到瞬态光电导率增加的超分子棒中(φƩμmax = 2.4×10 −4 cm 2 V -1 s -1 )。与装载在非π凝胶介质中的C60相比,在π凝胶介质中的C60超分子棒显示出高光电流。该发现为大规模制备用于装置应用的富勒烯的微米级光电导棒提供了机会。

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