Yang Yuzhuo, Zhang Yuzhe, Yang Yang, Xu Xi
Center for Advanced Materials Research, Beijing Normal University, Zhuhai 519087, China.
Theoretical Chemistry Institute and Department of Chemistry, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.
J Chem Phys. 2024 Dec 28;161(24). doi: 10.1063/5.0243086.
Proton transfer plays a crucial role in various chemical and biological processes. A major theoretical challenge in simulating proton transfer arises from the quantum nature of the proton. The constrained nuclear-electronic orbital (CNEO) framework was recently developed to efficiently and accurately account for nuclear quantum effects, particularly quantum nuclear delocalization effects, in quantum chemistry calculations and molecular dynamics simulations. In this paper, we systematically investigate challenging proton transfer modes in a series of shared-proton systems using CNEO density functional theory (CNEO-DFT), focusing on evaluating existing electron-proton correlation functionals. Our results show that CNEO-DFT accurately describes proton transfer vibrational modes and significantly outperforms conventional DFT. The inclusion of the epc17-2 electron-proton correlation functional in CNEO-DFT produces similar performance to that without electron-proton correlations, while the epc17-1 functional yields less accurate results, comparable with conventional DFT. These findings hold true for both asymmetrical and symmetrical shared-proton systems. Therefore, until a more accurate electron-proton correlation functional is developed, we currently recommend performing vibrational spectrum calculations using CNEO-DFT without electron-proton correlation functionals.
质子转移在各种化学和生物过程中起着至关重要的作用。模拟质子转移的一个主要理论挑战源于质子的量子性质。受限核电子轨道(CNEO)框架最近被开发出来,用于在量子化学计算和分子动力学模拟中高效、准确地考虑核量子效应,特别是量子核离域效应。在本文中,我们使用CNEO密度泛函理论(CNEO-DFT)系统地研究了一系列共享质子系统中具有挑战性的质子转移模式,重点是评估现有的电子-质子相关泛函。我们的结果表明,CNEO-DFT准确地描述了质子转移振动模式,并且显著优于传统的DFT。在CNEO-DFT中包含epc17-2电子-质子相关泛函产生的性能与没有电子-质子相关性时相似,而epc17-1泛函产生的结果准确性较低,与传统DFT相当。这些发现对于不对称和对称共享质子系统都成立。因此,在开发出更准确的电子-质子相关泛函之前,我们目前建议使用没有电子-质子相关泛函的CNEO-DFT进行振动光谱计算。