Ahn Jeonghwan, Hong Iuegyun, Lee Gwangyoung, Shin Hyeondeok, Benali Anouar, Kwon Yongkyung
Department of Physics, Konkuk University, Seoul 05029, Korea.
Computational Science Division, Argonne National Laboratory, Argonne, Illinois 60439, USA.
Phys Chem Chem Phys. 2021 Oct 6;23(38):22147-22154. doi: 10.1039/d1cp02473f.
Diffusion Monte Carlo (DMC) calculations have been performed to study the adsorption of a single Pt atom on pristine graphene. We obtain the adsorption energy curves of a single Pt atom adsorbed at three different adsorption sites (bridge, on-top, hollow) as functions of the vertical distance from a graphene surface for both spin singlet and triplet states. The bridge-site adsorption in a singlet spin state is found to be energetically most stable, which is consistent with previous theoretical predictions. As the Pt atom moves away from a graphene surface, spin triplet states are favored over spin singlet states for all three adsorption sites, reflecting that the ground state of an isolated Pt atom is in a spin triplet state. Furthermore, our DMC calculations reveal local-minimum features in the triplet region which is understood to be due to van der Waals interaction between the Pt atom and graphene. This provides a comprehensive understanding for a spin crossing from a physisorbed triplet state to a chemisorbed singlet state in the adsorption process of a single Pt atom on graphene.
已进行扩散蒙特卡罗(DMC)计算以研究单个铂原子在原始石墨烯上的吸附情况。我们获得了单个铂原子吸附在三个不同吸附位点(桥位、顶位、空位)时的吸附能曲线,这些曲线是自旋单重态和三重态下相对于石墨烯表面垂直距离的函数。发现在单重自旋态下桥位吸附在能量上最稳定,这与先前的理论预测一致。随着铂原子远离石墨烯表面,对于所有三个吸附位点,自旋三重态比自旋单重态更受青睐,这反映出孤立铂原子的基态处于自旋三重态。此外,我们的DMC计算揭示了三重态区域中的局部极小值特征,据认为这是由于铂原子与石墨烯之间的范德华相互作用所致。这为单个铂原子在石墨烯上的吸附过程中从物理吸附的三重态到化学吸附的单重态的自旋交叉提供了全面的理解。