Department of Chemistry and Biochemistry, University of Alabama, Tuscaloosa, Alabama 35401, United States.
J Phys Chem A. 2023 Apr 13;127(14):3179-3189. doi: 10.1021/acs.jpca.3c00891. Epub 2023 Mar 29.
High-level correlated molecular orbital theory calculations have been performed to predict the thermodynamic and electronic properties of diatomic NpH and PuH. The excited states up to ∼10,000 cm were predicted for these molecules at the multireference SO-CASPT2 level. The inclusion of spin-orbit effects is fundamental to predict the low-lying state ordering. NpH is predicted to have a Π ground state, and PuH has a Π ground state at the SO-CASPT2 level. The adiabatic electron affinities (AEAs) and ionization energies (IEs) of NpH and PuH were calculated to be 0.389 and 6.156 and 0.396 and 6.296 eV, respectively, using the Feller-Peterson-Dixon approach. The AEA increases going from AcH (0.425 eV) to ThH (0.820 eV) and decreases from ThH to PuH. The IEs of Pa-Np hydrides are close to ∼6.2 eV followed by an increase of 0.14 eV to PuH (6.296 eV). The An-H bond dissociation energy (BDE) decreases from 276.4 (AcH) to 107.1 (PuH) kJ/mol; the BDE(NpH) is ∼80 kJ/mol higher than that of PuH. Natural bond orbital calculations show that the bond character for these molecules is mainly ionic, AnH. The additional electron in NpH and PuH populates the 6d orbital, and NpH and PuH are formed by the removal of a 7s electron. The current work in conjunction with prior work on the AcH to UH in different charge states provides insights into how these properties change across the actinide series.
采用高层相关分子轨道理论计算方法,预测了双原子 NpH 和 PuH 的热力学和电子性质。在多参考 SO-CASPT2 水平上预测了这些分子高达约 10000cm 的激发态。包含自旋轨道效应对于预测低能态序至关重要。预测 NpH 具有Π基态,而 PuH 在 SO-CASPT2 水平上具有Π基态。使用 Feller-Peterson-Dixon 方法计算了 NpH 和 PuH 的绝热电子亲和能 (AEA) 和电离能 (IE),分别为 0.389 和 6.156 和 0.396 和 6.296 eV。AEA 从 AcH(0.425 eV)增加到 ThH(0.820 eV),然后从 ThH 减少到 PuH。Pa-Np 氢化物的 IE 接近约 6.2 eV,然后增加 0.14 eV 到 PuH(6.296 eV)。An-H 键离解能 (BDE) 从 276.4(AcH)降低到 107.1(PuH)kJ/mol;BDE(NpH)比 PuH 高约 80 kJ/mol。自然键轨道计算表明,这些分子的键特性主要是离子性的,AnH。NpH 和 PuH 中的额外电子填充 6d 轨道,NpH 和 PuH 是通过去除 7s 电子形成的。本工作与不同电荷态的 AcH 到 UH 的先前工作相结合,提供了关于这些性质如何在锕系元素系列中变化的见解。