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首页> 外文期刊>Angewandte Chemie >A Two-Dimensional Polyimide-Graphene Heterostructure with Ultra-fast Interlayer Charge Transfer
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A Two-Dimensional Polyimide-Graphene Heterostructure with Ultra-fast Interlayer Charge Transfer

机译:具有超快速层间电荷转移的二维聚酰亚胺 - 石墨烯异质结构

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摘要

Two-dimensional polymers (2DPs) are a class of atomically/molecularly thin crystalline organic 2D materials. They are intriguing candidates for the development of unprecedented organic-inorganic 2D van der Waals heterostructures (vdWHs) with exotic physicochemical properties. In this work, we demonstrate the on-water surface synthesis of large-area (cm(2)), monolayer 2D polyimide (2DPI) with 3.1-nm lattice. Such 2DPI comprises metal-free porphyrin and perylene units linked by imide bonds. We further achieve a scalable synthesis of 2DPI-graphene (2DPI-G) vdWHs via a face-to-face co-assembly of graphene and 2DPI on the water surface. Remarkably, femtosecond transient absorption spectroscopy reveals an ultra-fast interlayer charge transfer (ca. 60 fs) in the resultant 2DPI-G vdWH upon protonation by acid, which is equivalent to that of the fastest reports among inorganic 2D vdWHs. Such large interlayer electronic coupling is ascribed to the interlayer cation-pi interaction between 2DP and graphene.
机译:二维聚合物(2DPs)是一类原子/分子结构的薄晶有机二维材料。它们是开发具有奇异物理化学性质的前所未有的有机-无机二维范德华异质结构(VDWH)的诱人候选材料。在这项工作中,我们展示了在水面上合成具有3.1nm晶格的大面积(cm(2))、单层2D聚酰亚胺(2DPI)。这种2DPI包含由酰亚胺键连接的无金属卟啉和苝单元。我们通过石墨烯和2DPI在水面上的面对面共组装,进一步实现了2DPI石墨烯(2DPI-G)VDWH的可伸缩合成。值得注意的是,飞秒瞬态吸收光谱显示,酸质子化后生成的2DPI-G vdWH中存在超快的层间电荷转移(约60 fs),这相当于无机2D vdWH中最快的报告。这种大的层间电子耦合归因于2DP和石墨烯之间的层间阳离子pi相互作用。

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