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用于筛选单分子电导开关的有效描述符

Effective Descriptor for Screening Single-Molecule Conductance Switches.

作者信息

Zhou Junjun, Yang Sha, Zhang Yirong, Ren Ji-Chang, Liu Wei

机构信息

Nano and Heterogeneous Materials Center, School of Materials Science and Engineering, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu, China.

State Key Laboratory of Rare Earth Resource Utilization, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, Jilin, China.

出版信息

J Am Chem Soc. 2024 Mar 13;146(10):6962-6973. doi: 10.1021/jacs.3c14655. Epub 2024 Mar 1.

Abstract

The adsorption-type molecular switch exhibits bistable states with an equivalently long lifetime at the organic/inorganic interface, promising reliable switching behavior and superior assembly ability in the electronic circuits at the molecular scale. However, the number of reported adsorption-type molecular switches is currently less than 10, and exploring these molecular switches poses a formidable challenge due to the intricate interplay occurring at the interface. To address this challenge, we have developed a model enabling the identification of diverse molecular switches on metal surfaces based on easily accessible physical characteristics. These characteristics primarily include the metal valency electron concentration, the work function of metal surfaces, and the electronegativity difference of molecules. Using this model, we identified 56 new molecular switches. Employing the gradient descent algorithm and statistical linear discriminant analysis, we constructed an explicit descriptor that establishes a relationship between the interfacial structure and chemical environment and the stability of molecular switches. The model's accuracy was validated through density functional theory calculations, achieving a 90% accuracy for aromatic molecular switches. The conductive switching behaviors were further confirmed by nonequilibrium Green's function transport calculations.

摘要

吸附型分子开关在有机/无机界面呈现出具有等效长寿命的双稳态,有望在分子尺度的电子电路中实现可靠的开关行为和卓越的组装能力。然而,目前报道的吸附型分子开关数量不足10种,由于界面处发生的复杂相互作用,探索这些分子开关构成了一项艰巨的挑战。为应对这一挑战,我们开发了一个模型,能够基于易于获取的物理特性识别金属表面上的多种分子开关。这些特性主要包括金属价电子浓度、金属表面的功函数以及分子的电负性差异。利用该模型,我们识别出了56种新的分子开关。通过梯度下降算法和统计线性判别分析,我们构建了一个明确的描述符,该描述符建立了界面结构与化学环境以及分子开关稳定性之间的关系。通过密度泛函理论计算验证了该模型的准确性,对于芳香族分子开关达到了90%的准确率。非平衡格林函数输运计算进一步证实了导电开关行为。

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