Petrus Enric, Segado Mireia, Bandeira Nuno A G, Bo Carles
Institute of Chemical Research of Catalonia (ICIQ), The Barcelona Institute of Science and Technology (BIST), Av. Països Catalans 16, 43007 Tarragona, Spain.
BioISI - Biosystems & Integrative Sciences Institute, C8, Faculty Sciences, University of Lisbon, Campo Grande, 1749-016 Lisboa, Portugal.
Inorg Chem. 2020 Jun 15;59(12):8353-8360. doi: 10.1021/acs.inorgchem.0c00757. Epub 2020 Jun 4.
We present a density functional theory study for the photochemical water oxidation reaction promoted by uranyl nitrate upon sunlight radiation. First, we explored the most stable uranyl complex in the absence of light. The reaction in a dark environmen proceeds through the condensation of uranyl monomers to form dimeric hydroxo-bridged species, which is the first step toward a hydrogen evolution reaction (HER). We found a triplet-state-driven mechanism that leads to the formation of uranyl peroxide and hydrogen gas. To describe in detail this reaction path, we characterized the singlet and triplet low-lying states of the dimeric hydroxo-bridged species, including minima, transition states, minimal energy crossing points, and adiabatic energies. Our computational results provide mechanistic insights that are in good agreement with the experimental data available.
我们展示了一项关于硝酸铀酰在阳光辐射下促进光化学水氧化反应的密度泛函理论研究。首先,我们探索了在无光条件下最稳定的铀酰配合物。在黑暗环境中的反应通过铀酰单体的缩合形成二聚体羟基桥连物种进行,这是朝着析氢反应(HER)迈出的第一步。我们发现了一种三重态驱动的机制,该机制导致过氧化铀酰和氢气的形成。为了详细描述这个反应路径,我们对二聚体羟基桥连物种的单重态和三重态低能态进行了表征,包括极小值、过渡态、最小能量交叉点和绝热能量。我们的计算结果提供了与现有实验数据高度一致的机理见解。