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首页> 外文期刊>International Journal of Quantum Chemistry >Benchmark Calculations for Molecules in the Gas Phase: State-of-the-Art Coupled-Cluster Computations
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Benchmark Calculations for Molecules in the Gas Phase: State-of-the-Art Coupled-Cluster Computations

机译:气相中分子的基准计算:最先进的耦合簇计算

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摘要

Implementation of very accurate ab initio methods on the one hand and improvements in computer facilities on the other hand allow the determination of structural, thermochemical, and spectroscopic properties of small- to medium-sized molecules to a very high accuracy. The predictive capabilities have become so high that theoretical calculations can guide, support, and even challenge experimental determinations. Therefore, nowadays ab initio calculations are suitable for benchmarking purposes, even for quite large systems. To perform benchmark calculations, highly correlated methods, such as the coupled cluster ones, should be employed in conjunction with extrapolative and additive techniques to account for basis set and wave function truncation errors as well as to include important corrections, such as those related to core correlation and relativistic effects. Some illustrative examples are presented. The comparison of the computed data with experimental results allows us to show how quantum-chemical computations are able to either accurately predict experimental data or cast doubts on them. Perspectives for extension of extrapolation techniques to the structures and properties of open-shell systems with an effectiveness and reliability comparable with that well documented for closed-shell systems are also discussed. Finally, perspectives for wider application of benchmark calculations are addressed.
机译:一方面实现非常精确的从头计算方法,另一方面实现计算机设施的改进,可以非常高精度地确定中小型分子的结构,热化学和光谱性质。预测能力已经变得如此之高,以至于理论计算可以指导,支持甚至挑战实验结果。因此,如今,即使是相当大的系统,从头计算也适合于基准测试。为了进行基准计算,应将高度相关的方法(例如耦合聚类方法)与外推和加性技术结合使用,以解决基集和波动函数截断误差,并包括重要的校正(例如与岩心相关的校正)相关和相对论效应。给出了一些说明性的例子。将计算数据与实验结果进行比较,可以使我们展示量子化学计算如何能够准确地预测实验数据或对它们产生怀疑。还讨论了将外推技术扩展到具有与封闭壳系统已被充分证明的有效性和可靠性相当的有效性和可靠性的开放壳系统的结构和特性的观点。最后,讨论了更广泛地应用基准计算的观点。

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