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首页> 外文期刊>Journal of physical chemistry letters >Electron Pair Repulsion Responsible for the Peculiar Edge Effects and Surface Chemistry of Black Phosphorus
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Electron Pair Repulsion Responsible for the Peculiar Edge Effects and Surface Chemistry of Black Phosphorus

机译:电子对排斥负责黑磷的特殊边缘效果和表面化学

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摘要

The electronic and optical properties of black phosphorus (black-P) are significantly modulated by fabricating the edges of this two-dimensional material. Electron lone pairs (ELPs) are ubiquitous in black-P, but their role in creating the edge effects of black-P is poorly understood. Using first-principle calculations, we report ELPs of black-P experience severe Coulomb repulsion and play a central role in creating the edge effects of black-P. We discover the outermost P atoms of the zigzag edges of black-PQDs are free of the Coulomb repulsion, but the P atoms of the armchair edges do experience the Coulomb repulsion. The Coulomb repulsion serves as a new chemical driving force to make electron donor acceptor bonds with chemical groups bearing vacant orbitals. Our results provide insights into the mechanism responsible for the peculiar edge effects of black-P and highlight the opportunity to use the ELPs of black-P for their damage-free surface functionalization.
机译:通过制造该二维材料的边缘来显着调节黑磷(Black-P)的电子和光学性质。 电子唯一对(ELP)在黑色中普遍存在,但它们在创造黑P的边缘效应方面的作用很差。 使用第一原则计算,我们报告了Black-P的ELP体验严重库仑排斥,并在创造Black-P的边缘效果方面发挥着核心作用。 我们发现黑色PQD的锯齿形边缘的最外面的P原子是没有库仑排斥,但扶手椅边缘的P原子确实经历了库仑排斥。 库仑排斥作为一种新的化学驱动力,使电子给体受体键与轴承空气轨道的化学基团。 我们的结果提供了对黑色特殊边缘效应负责的机制,并突出有机会使用Black-P的抗损坏表面功能化。

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