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矩形石墨烯薄片的能量分解方案

Energy Decomposition Scheme for Rectangular Graphene Flakes.

作者信息

Witek Henryk A

机构信息

Department of Applied Chemistry, National Yang Ming Chiao Tung University, Hsinchu 30010, Taiwan.

Institute of Molecular Science, National Yang Ming Chiao Tung University, Hsinchu 30010, Taiwan.

出版信息

Nanomaterials (Basel). 2024 Jan 12;14(2):0. doi: 10.3390/nano14020181.

Abstract

We show-to our own surprise-that total electronic energies for a family of × rectangular graphene flakes can be very accurately represented by a simple function of the structural parameters and with errors not exceeding 1 kcal/mol. The energies of these flakes, usually referred to as multiple zigzag chains (,), are computed for , < 21 at their optimized geometries using the DFTB3 methodology. We have discovered that the structural parameters and (and their simple algebraic functions) provide a much better basis for the energy decomposition scheme than the various topological invariants usually used in this context. Most terms appearing in our energy decomposition scheme seem to have simple chemical interpretations. Our observation goes against the well-established knowledge stating that many-body energies are complicated functions of molecular parameters. Our observations might have far-reaching consequences for building accurate machine learning models.

摘要

令我们自己惊讶的是,我们发现,对于一族×矩形石墨烯薄片,其总电子能量可以由结构参数和的一个简单函数非常精确地表示,误差不超过1千卡/摩尔。这些薄片的能量,通常称为多锯齿链(,),使用DFTB3方法在其优化几何结构下针对<21进行计算。我们发现,结构参数和(及其简单代数函数)为能量分解方案提供了比在此背景下通常使用的各种拓扑不变量更好的基础。我们能量分解方案中出现的大多数项似乎都有简单的化学解释。我们的观察结果与已确立的知识相悖,该知识表明多体能量是分子参数的复杂函数。我们的观察结果可能对构建精确的机器学习模型产生深远影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/295a/11154492/dc0d99896c5c/nanomaterials-14-00181-g0A1.jpg

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