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Local Electronic Structure of Molecular Heterojunctions in a Single-Layer 2D Covalent Organic Framework

机译:单层二维共价有机骨架中分子异质结的局部电子结构

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摘要

The synthesis of a single-layer covalent organic framework (COF) with spatially modulated internal potentials provides new opportunities for manipulating the electronic structure of molecularly defined materials. Here, the fabrication and electronic characterization of COF-420: a single-layer porphyrin-based square-lattice COF containing a periodic array of oriented, type II electronic heterojunctions is reported. In contrast to previous donor-acceptor COFs, COF-420 is constructed from building blocks that yield identical cores upon reticulation, but that are bridged by electrically asymmetric linkers supporting oriented electronic dipoles. Scanning tunneling spectroscopy reveals staggered gap (type II) band alignment between adjacent molecular cores in COF-420, in agreement with first-principles calculations. Hirshfeld charge analysis indicates that dipole fields from oriented imine linkages within COF-420 are the main cause of the staggered electronic structure in this square grid of atomically-precise heterojunctions.
机译:具有空间调制的内部电势的单层共价有机骨架(COF)的合成为操纵分子定义材料的电子结构提供了新的机会。在这里,COF-420的制造和电子表征:报告了单层基于卟啉的方晶格COF,其中包含周期性排列的II型电子异质结的周期性阵列。与先前的供体-受体COF相比,COF-420由构建单元构建,该构建单元在网状结构中产生相同的磁芯,但由支撑定向电子偶极子的电非对称连接器桥接。扫描隧道光谱法揭示了COF-420中相邻分子核之间的交错间隙(II型)能带排列,与第一性原理计算一致。 Hirshfeld电荷分析表明,COF-420中来自定向亚胺键的偶极子场是原子精确异质结的方形网格中电子结构交错的主要原因。

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