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用于预测β-二酮亚胺配合物中铁穆斯堡尔同质异能位移和四极分裂的密度泛函计算

Density Functional Calculations for Prediction of Fe Mössbauer Isomer Shifts and Quadrupole Splittings in β-Diketiminate Complexes.

作者信息

McWilliams Sean F, Brennan-Wydra Emma, MacLeod K Cory, Holland Patrick L

机构信息

Department of Chemistry, Yale University, 225 Prospect Street, New Haven, Connecticut 06520, United States.

出版信息

ACS Omega. 2017 Jun 30;2(6):2594-2606. doi: 10.1021/acsomega.7b00595. Epub 2017 Jun 12.

Abstract

The relative ease of Mössbauer spectroscopy and of density functional theory (DFT) calculations encourages the use of Mössbauer parameters as a validation method for calculations, and the use of calculations as a double check on crystallographic structures. A number of studies have proposed correlations between the computationally determined electron density at the iron nucleus and the observed isomer shift, but deviations from these correlations in low-valent iron β-diketiminate complexes encouraged us to determine a new correlation for these compounds. The use of B3LYP/def2-TZVP in the ORCA platform provides an excellent balance of accuracy and speed. We provide here not only this new correlation and a clear guide to its use but also a systematic analysis of the limitations of this approach. We also highlight the impact of crystallographic inaccuracies, DFT model truncation, and spin states, with intent to assist experimentalists to use Mössbauer spectroscopy and calculations together.

摘要

穆斯堡尔光谱法和密度泛函理论(DFT)计算相对简便,这促使人们将穆斯堡尔参数用作计算的验证方法,并将计算用作对晶体结构的二次检验。许多研究提出了通过计算确定的铁原子核处电子密度与观测到的同质异能位移之间的相关性,但低价铁β-二酮亚胺配合物中这些相关性的偏差促使我们确定这些化合物的新相关性。在ORCA平台中使用B3LYP/def2-TZVP能在准确性和速度之间实现出色的平衡。我们在此不仅提供了这种新的相关性及其使用的清晰指南,还对该方法的局限性进行了系统分析。我们还强调了晶体学误差、DFT模型截断和自旋态的影响,旨在帮助实验人员将穆斯堡尔光谱法和计算结合使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7be/6643720/fbf17c32dc66/ao-2017-005955_0005.jpg

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