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Charge Transfer Hybrids of Graphene Oxide and the Intrinsically Microporous Polymer PIM-1

机译:石墨烯和本质上微孔聚合物PIM-1的电荷转移杂交物

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摘要

Nanohybrid materials based on nanoparticles of the intrinsically microporous polymer PIM-1 and graphene oxide (GO) are prepared from aqueous dispersions with a reprecipitation method, resulting in the surface of the GO sheets being decorated with nanoparticles of PIM-1. The significant blueshift in fluorescence signals for the GO/PIM-1 nanohybrids indicates modification of the optoelectronic properties of the PIM-1 in the presence of the GO due to their strong interactions. The stiffening in the Raman G peak of GO (by nearly 6 cm(-1)) further indicates p-doping of the GO in the presence of PIM. Kelvin probe force microscopy (KPFM) and electrochemical reduction measurements of the nanohybrids provide direct evidence for charge transfer between the PIM-1 nanoparticles and the GO nanosheets. These observations will be of importance for future applications of GO-PIM-1 nanohybrids as substrates and promoters in catalysis and sensing.
机译:基于本质上微孔聚合物PIM-1和石墨烯氧化物(GO)的纳米组织材料由具有再沉淀法的水性分散体制成的,导致GO片材的表面被PIM-1的纳米颗粒装饰。 Go / PIM-1纳米冬小麦的荧光信号中的显着蓝色表明由于其强的相互作用而在延迟存在下PIM-1的光电性质的修改。 拉曼G峰的加强(近6cm(-1))进一步表明在PIM存在下的P掺杂。 Kelvin探针力显微镜(KPFM)和纳米冬次的电化学还原测量提供了PIM-1纳米颗粒与GO纳米片之间的电荷转移的直接证据。 这些观察结果对于未来的Go-PIM-1纳米冬小时作为碱性和催化剂的促进剂将是重要的。

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