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基于单层酞菁的共价有机框架中的电子离域:第一性原理研究

Electron delocalization in single-layer phthalocyanine-based covalent organic frameworks: a first principle study.

作者信息

Pham Hung Q, Le Dong Q, Pham-Tran Nguyen-Nguyen, Kawazoe Yoshiyuki, Nguyen-Manh Duc

机构信息

Faculty of Chemistry, University of Science, VNU-HCM Ho Chi Minh City Vietnam

Institute for Computational Science and Technology Ho Chi Minh City Vietnam.

出版信息

RSC Adv. 2019 Sep 18;9(50):29440-29447. doi: 10.1039/c9ra05159g. eCollection 2019 Sep 13.

Abstract

In this work, we first investigate the localized electronic states in the band structures of three single-layer COFs based on typical building units of COFs chemistry. Our results confirm that the polar nature of strong bonds in these building units is a hindrance to a fully delocalized structure and disfavors the band-like mechanism of transport. We then show that a rational design of the building units can lead to dispersive band states in the electronic structure and results in conducting single-layer COFs. We demonstrate this strategy by investigating the charge carrier transport in a series of single-layer Ni-phthalocyanine (NiPc) covalent organic frameworks (COFs), namely, NiPc-P, NiPc-2P, and NiPc-3P. Three proposed COFs exhibit semiconducting band gaps ranging from 0.55 to 0.91 eV. Their room-temperature intrinsic mobility is predicted to be in range of 200-600 cm V s and 20 000-60 000 cm V s for electrons and holes, respectively, which are comparable to those of phosphorene and higher than those of the trigonal prismatic molybdenum disulfide. NiPc are dynamically and mechanically stable and can be synthesized the co-evaporation between Ni and corresponding tetracyano linkers. Importantly, we demonstrate that the properties of the single-layer COFs can be tuned by engineering the organic building blocks. Our theoretical study not only provides insight into the design principles for semiconducting single-layer COFs but also highlights the significance of reticular chemistry in the development of a new generation of two-dimensional materials for optoelectronic applications.

摘要

在这项工作中,我们首先基于共价有机框架(COF)化学的典型构建单元,研究了三种单层COF能带结构中的局域电子态。我们的结果证实,这些构建单元中强键的极性不利于形成完全离域的结构,并且不利于能带状传输机制。然后我们表明,对构建单元进行合理设计可以导致电子结构中出现色散能带态,并产生导电的单层COF。我们通过研究一系列单层镍酞菁(NiPc)共价有机框架(COF),即NiPc-P、NiPc-2P和NiPc-3P中的电荷载流子传输,来证明这一策略。所提出的三种COF表现出0.55至0.91 eV的半导体带隙。预测它们在室温下电子和空穴的本征迁移率分别在200 - 600 cm V s和20000 - 60000 cm V s范围内,这与黑磷相当,且高于三棱柱二硫化钼。NiPc在动力学和力学上是稳定的,可以通过镍与相应四氰基连接体之间的共蒸发来合成。重要的是,我们证明了可以通过设计有机构建块来调节单层COF的性质。我们的理论研究不仅深入了解了半导体单层COF的设计原理,还突出了网状化学在开发用于光电子应用的新一代二维材料中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b38/9071832/5bf79c537ebe/c9ra05159g-f1.jpg

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