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COMPAS-4:(硼氮)取代稠合聚苯并类碳氢化合物数据集——数据分析与特征工程

COMPAS-4: A Data Set of (BN) Substituted -Condensed Polybenzenoid Hydrocarbons─Data Analysis and Feature Engineering.

作者信息

Chakraborty Sabyasachi, Almog Itay, Gershoni-Poranne Renana

机构信息

The Schulich Faculty of Chemistry and the Resnick Sustainability Center for Catalysis, Technion - Israel Institute of Technology, Haifa 32000, Israel.

出版信息

J Chem Inf Model. 2025 Jun 9;65(11):5508-5517. doi: 10.1021/acs.jcim.5c00608. Epub 2025 May 23.

Abstract

Incorporation of a boron-nitrogen (BN) pair into polycyclic aromatic hydrocarbons is a common approach for modulating their electronic properties. However, a conceptual and quantitative framework rationalizing the observed effects has not been developed, and general structure-property relationships remain elusive. In this work, we perform a data-driven investigation that leads to concrete principles for rational design of (BN)-PBHs with targeted properties. We construct a new chemical database, COMPAS-4, which contains the geometries and properties of all possible (BN)-PBH isomers up to 6 rings, calculated at both the GFN1-xTB and density functional theory (DFT) (CAM-B3LYP/def2-SVP) levels of theory. We investigate the influence of BN-substitution on various molecular properties, including their molecular orbital energies and aromaticity, and define specific structural features that determine these properties. Notably, all of these features are chemically intuitive and simple to extract from the structure of the molecule, without any prior computation. We find that the most influential feature is the number of rings whose cyclic delocalization is disturbed as a result of the substitution.

摘要

将硼氮(BN)对引入多环芳烃是调节其电子性质的常用方法。然而,尚未建立一个能够合理解释所观察到的效应的概念性和定量框架,一般的结构-性质关系仍然难以捉摸。在这项工作中,我们进行了一项数据驱动的研究,得出了具有目标性质的(BN)-多环苯并芘合理设计的具体原则。我们构建了一个新的化学数据库COMPAS-4,其中包含了所有可能的六环以下(BN)-多环苯并芘异构体的几何结构和性质,这些数据是在GFN1-xTB和密度泛函理论(DFT)(CAM-B3LYP/def2-SVP)理论水平上计算得到的。我们研究了BN取代对各种分子性质的影响,包括分子轨道能量和芳香性,并确定了决定这些性质的特定结构特征。值得注意的是,所有这些特征在化学上都是直观的,并且无需任何预先计算就能从分子结构中轻松提取。我们发现,最具影响力的特征是由于取代而导致其环状离域受到干扰的环的数量。

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