Góger Szabolcs, Sandonas Leonardo Medrano, Müller Carolin, Tkatchenko Alexandre
Department of Physics and Materials Science, University of Luxembourg, L-1511 Luxembourg City, Luxembourg.
Phys Chem Chem Phys. 2023 Aug 23;25(33):22211-22222. doi: 10.1039/d3cp02256k.
Understanding correlations - or lack thereof - between molecular properties is crucial for enabling fast and accurate molecular design strategies. In this contribution, we explore the relation between two key quantities describing the electronic structure and chemical properties of molecular systems: the energy gap between the frontier orbitals and the dipole polarizability. Based on the recently introduced QM7-X dataset, augmented with accurate molecular polarizability calculations as well as analysis of functional group compositions, we show that polarizability and HOMO-LUMO gap are uncorrelated when considering sufficiently extended subsets of the chemical compound space. The relation between these two properties is further analyzed on specific examples of molecules with similar composition as well as homooligomers. Remarkably, the freedom brought by the lack of correlation between molecular polarizability and HOMO-LUMO gap enables the design of novel materials, as we demonstrate on the example of organic photodetector candidates.
了解分子性质之间的相关性(或缺乏相关性)对于实现快速准确的分子设计策略至关重要。在本论文中,我们探讨了描述分子体系电子结构和化学性质的两个关键量之间的关系:前线轨道之间的能隙和偶极极化率。基于最近引入的QM7-X数据集,并辅以精确的分子极化率计算以及官能团组成分析,我们表明,在考虑化学化合物空间中足够扩展的子集时,极化率和最高占据分子轨道-最低未占分子轨道(HOMO-LUMO)能隙是不相关的。我们还通过具有相似组成的分子以及同寡聚物的具体例子,进一步分析了这两个性质之间的关系。值得注意的是,分子极化率和HOMO-LUMO能隙之间缺乏相关性所带来的自由度,使得新型材料的设计成为可能,正如我们在有机光探测器候选物的例子中所展示的那样。