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Self-organization of Zr(IV) porphyrinoids on graphene oxide surfaces by axial metal coordination

机译:Zr(IV)卟啉类化合物在氧化石墨烯表面的自组织通过轴向金属配位

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摘要

The protruding oxophilic central metal ion of Zr~(IV) porphyrinoids facilitates axial coordination to the oxygen bearing functional groups on graphene oxide (GO) surfaces to result in new supramolecular photonic materials with high dye loading especially on edges and large defects. The reaction proceeds at room temperature with GO dispersed in tetrahydrofuran and GO films on glass. Since the Zr~(IV) serves as a conduit, the photophysical properties of the dye sensitized GO derive from both the axially bound chromophores and the GO substrate. Self-organization of metalloporphyrinoids on GO mediated by axial coordination of group (IV) metal ions allows for direct sensitization of graphene and graphenic materials without requiring covalent chemistries with poorly conducting linkers.
机译:Zr〜(IV)卟啉类化合物的突出的亲氧中心金属离子促进了与氧化石墨烯(GO)表面上含氧官能团的轴向配位,从而导致了新型的超分子光子材料,尤其是在边缘和大缺陷上具有高染料负载。反应在室温下进行,GO分散在四氢呋喃中,GO薄膜在玻璃上。由于Zr〜(IV)充当导管,染料敏化GO的光物理特性既来自轴向结合的生色团,也来自GO底物。通过基团(IV)金属离子的轴向配位介导的GO上的金属卟啉类化合物的自组织,可以使石墨烯和石墨烯材料直接敏化,而无需具有导电性较差的连接基的共价化学。

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