Extended benchmark set for lattice parameters of inorganic solids.

IF 3.4 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY Journal of Computational Chemistry Pub Date : 2024-08-12 DOI:10.1002/jcc.27479
Elodie Fernandes Lima, Thomas Bredow
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Abstract

The development of novel methods in solid-state quantum chemistry necessitates reliable reference data sets for their assessment. The most fundamental solid-state property of interest is the crystal structure, quantified by the lattice parameters. In the last decade, several studies were conducted to assess theoretical approaches based on the agreement of calculated lattice parameters with respect to experiment as a measure. However, most of these studies used a limited number of reference systems with high symmetry. The present work offers a more comprehensive reference benchmark denoted as Sol337LC, which consists of 337 inorganic compounds with 553 symmetry-inequivalent lattice parameters, representing every element of the periodic table for atomic numbers between 1 and 86, except noble gases, the radioactive elements and lanthanoids. The reference values were taken from earlier benchmarks and from measurements at very low temperature or extrapolation to 0 K. The experimental low-temperature lattice parameters were then corrected for zero-point energy effects via the quasi-harmonic approximation for direct comparison with quantum-chemical optimized structures. A selection of standard density functional approximations was assessed for their deviations from the experimental reference data. The calculations were performed with the crystal orbital program CRYSTAL23, applying optimized atom-centered basis sets of triple-zeta plus polarization quality. The SCAN functional family and the global hybrid functional PW1PW, augmented with the D3 dispersion correction, were found to provide closest agreement with the Sol337LC reference data.

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无机固体晶格参数扩展基准集。
固态量子化学新方法的开发需要可靠的参考数据集进行评估。最基本的固态特性是晶体结构,由晶格参数量化。在过去的十年中,已经开展了多项研究,根据晶格参数的计算结果与实验结果的一致性作为衡量标准,对理论方法进行评估。然而,这些研究大多只使用了数量有限的具有高度对称性的参考系统。本研究提供了一个更全面的参考基准,称为 Sol337LC,它由 337 种无机化合物组成,具有 553 个对称性不等的晶格参数,代表了元素周期表中原子序数在 1 到 86 之间的所有元素,惰性气体、放射性元素和镧系元素除外。然后通过准谐波近似对实验性低温晶格参数进行零点能量效应校正,以便与量子化学优化结构进行直接比较。评估了所选标准密度泛函近似值与实验参考数据的偏差。计算是通过晶体轨道程序 CRYSTAL23 进行的,应用了三重zeta 加极化质量的优化原子中心基集。结果发现,SCAN 函数族和全局混合函数 PW1PW(使用 D3 色散校正)与 Sol337LC 参考数据的一致性最为接近。
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来源期刊
CiteScore
6.60
自引率
3.30%
发文量
247
审稿时长
1.7 months
期刊介绍: This distinguished journal publishes articles concerned with all aspects of computational chemistry: analytical, biological, inorganic, organic, physical, and materials. The Journal of Computational Chemistry presents original research, contemporary developments in theory and methodology, and state-of-the-art applications. Computational areas that are featured in the journal include ab initio and semiempirical quantum mechanics, density functional theory, molecular mechanics, molecular dynamics, statistical mechanics, cheminformatics, biomolecular structure prediction, molecular design, and bioinformatics.
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