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金属有机配合物的 Hirshfeld 原子精修:与过渡金属成键的氢原子处理。

Hirshfeld Atom Refinement of Metal-Organic Complexes: Treatment of Hydrogen Atoms Bonded to Transition Metals.

机构信息

Biological and Chemical Research Centre, Chemistry Department, University of Warsaw, Żwirki i Wigury 101, 02-089 Warszawa, Poland.

出版信息

J Phys Chem A. 2023 Apr 6;127(13):3020-3035. doi: 10.1021/acs.jpca.2c06998. Epub 2023 Mar 22.

Abstract

Hydrogen positions in hydrides play a key role in hydrogen storage materials and high-temperature superconductors. Our recently published study of five crystal structures of transition-metal-bound hydride complexes showed that using aspherical atomic scattering factors for Hirshfeld atom refinement (HAR) resulted in a systematic elongation of metal-hydrogen bonds compared to using spherical scattering factors with the Independent Atom Model (IAM). Even though only standard-resolution X-ray data was used, for the highest-quality data, we obtained excellent agreement between the X-ray and the neutron-derived bond lengths. We present an extended version of this study including 10 crystal structures of metal-organic complexes containing hydrogen atoms bonded to transition-metal atoms for which both X-ray and neutron data are available. The neutron structures were used as a benchmark, and the X-ray structures were refined by applying Hirshfeld atom refinement using various basis sets and DFT functionals in order to investigate the influence of the technical aspects on the length of metal-hydrogen bonds. The result of including relativistic effects in the Hamiltonian and using a cluster of multipoles simulating interactions with a crystal environment during wave function calculations was examined. The effect of the data quality on the final result was also evaluated. The study confirms that a high quality of experimental data is the key factor allowing us to obtain significant improvement in transition metal (TM)-hydrogen bond lengths from HAR in comparison with the IAM. Individual adjustments and better choices of the basis set can improve hydrogen positions. Average differences between TM-H bond lengths obtained with various DFT functionals upon including relativistic effects or between double-ζ and triple-ζ basis sets were not statistically significant. However, if all bonds formed by H atoms were considered, significant differences caused by different refinement strategies were observed. Finally, we examined the refinement of atomic thermal motions. Anisotropic refinement of hydrogen thermal motions with HAR was feasible only in some cases, and isotropically refined hydrogen thermal motions were in similar agreement with neutron values whether obtained with HAR or with the IAM.

摘要

氢化物中的氢原子位置在储氢材料和高温超导体中起着关键作用。我们最近发表的一项关于五种过渡金属键合氢化物配合物晶体结构的研究表明,与使用独立原子模型(IAM)的球形散射因子相比,使用非球形原子散射因子进行 Hirshfeld 原子精修(HAR)会导致金属-氢键的系统伸长。尽管仅使用标准分辨率的 X 射线数据,但对于最高质量的数据,我们获得了 X 射线和中子衍生键长之间极好的一致性。我们提出了这项研究的扩展版本,其中包括 10 种含有与过渡金属原子键合的氢原子的金属有机配合物的晶体结构,这些结构都有 X 射线和中子数据。中子结构被用作基准,并用各种基组和 DFT 泛函应用 Hirshfeld 原子精修来精修 X 射线结构,以研究技术方面对金属-氢键长度的影响。在波函数计算中,我们研究了在哈密顿量中包含相对论效应和使用多极子簇模拟与晶体环境相互作用对结果的影响。还评估了数据质量对最终结果的影响。该研究证实,高质量的实验数据是关键因素,使我们能够通过 HAR 获得与 IAM 相比显著改善的过渡金属(TM)-氢键长度。个别调整和更好的基组选择可以改善氢原子的位置。在包含相对论效应或双 ζ 和三 ζ 基组之间的各种 DFT 泛函中获得的 TM-H 键长的平均差异没有统计学意义。然而,如果考虑所有由 H 原子形成的键,则观察到不同精修策略引起的显著差异。最后,我们研究了原子热运动的精修。仅在某些情况下,HAR 才能对氢原子的各向异性热运动进行精修,并且无论是使用 HAR 还是 IAM 获得的各向同性精修氢原子热运动,都与中子值非常吻合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3cc/10084459/690e14fc7a81/jp2c06998_0002.jpg

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