Chen Chi-Chun, Chai Jeng-Da
Department of Physics, National Taiwan University, Taipei 10617, Taiwan.
Center for Theoretical Physics and Center for Quantum Science and Engineering, National Taiwan University, Taipei 10617, Taiwan.
Nanomaterials (Basel). 2022 Nov 9;12(22):3943. doi: 10.3390/nano12223943.
The reliable prediction of electronic properties associated with graphene nanosystems can be challenging for conventional electronic structure methods, such as Kohn-Sham (KS) density functional theory (DFT), due to the presence of strong static correlation effects in these systems. To address this challenge, TAO (thermally assisted occupation) DFT has been recently proposed. In the present study, we employ TAO-DFT to predict the electronic properties of -HGQRs (i.e., the hexagonal graphene quantum rings consisting of aromatic rings fused together at each side). From TAO-DFT, the ground states of -HGQRs are singlets for all the cases investigated ( = 3-15). As the system size increases, there should be a transition from the nonradical to polyradical nature of ground-state -HGQR. The latter should be intimately related to the localization of active TAO-orbitals at the inner and outer edges of -HGQR, which increases with increasing system size.
对于传统的电子结构方法,如科恩-沈(KS)密度泛函理论(DFT)而言,由于这些石墨烯纳米系统中存在强静态相关效应,可靠预测与石墨烯纳米系统相关的电子性质可能具有挑战性。为应对这一挑战,热辅助占据(TAO)密度泛函理论最近被提出。在本研究中,我们采用TAO-DFT来预测 -HGQRs(即由芳香环在每一侧融合在一起组成的六边形石墨烯量子环)的电子性质。从TAO-DFT可知,在所研究的所有情况( = 3 - 15)下,-HGQRs的基态都是单重态。随着系统尺寸的增加,基态 -HGQR的性质应该会从非自由基态转变为多自由基态。后者应该与活性TAO轨道在 -HGQR内边缘和外边缘的局域化密切相关,这种局域化会随着系统尺寸的增加而增强。