4.7 Article

BH9, a New Comprehensive Benchmark Data Set for Barrier Heights and Reaction Energies: Assessment of Density Functional Approximations and Basis Set Incompleteness Potentials

Journal

JOURNAL OF CHEMICAL THEORY AND COMPUTATION
Volume 18, Issue 1, Pages 151-166

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jctc.1c00694

Keywords

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Funding

  1. Natural Sciences and Engineering Research Council of Canada
  2. Canadian Foundation for Innovation
  3. British Columbia Knowledge Development Fund
  4. Spanish Ministerio de Ciencia e Innovacion [PGC2018-097520-A-100, RED2018-102612-T]
  5. Agencia Estatal de Investigacion (AEI) [PGC2018-097520-A-100, RED2018-102612-T]
  6. Spanish MINECO [RyC-2016-20301]

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Accurately calculating reaction energies and barrier heights is crucial for computational studies of reaction mechanisms and thermochemistry. The BH9 benchmark set, comprising 449 chemical reactions, is the most comprehensive to date and allows for the assessment of computational methods. Despite the penalty associated with using the DLPNO approximation, the reference data obtained are accurate enough to serve as a benchmark for DFT methods.
The calculation of accurate reaction energies and barrier heights is essential in computational studies of reaction mechanisms and thermochemistry. To assess methods regarding their ability to predict these two properties, high-quality benchmark sets are required that comprise a reasonably large and diverse set of organic reactions. Due to the time-consuming nature of both locating transition states and computing accurate reference energies for reactions involving large molecules, previous benchmark sets have been limited in scope, the number of reactions considered, and the size of the reactant and product molecules. Recent advances in coupled-cluster theory, in particular local correlation methods like DLPNO-CCSD(T), now allow the calculation of reaction energies and barrier heights for relatively large systems. In this work, we present a comprehensive and diverse benchmark set of barrier heights and reaction energies based on DLPNO-CCSD(T)/CBS called BH9. BH9 comprises 449 chemical reactions belonging to nine types common in organic chemistry and biochemistry. We examine the accuracy of DLPNO-CCSD(T) vis-a-vis canonical CCSD(T) for a subset of BH9 and conclude that, although there is a penalty in using the DLPNO approximation, the reference data are accurate enough to serve as a benchmark for density functional theory (DFT) methods. We then present two applications of the BH9 set. First, we examine the performance of several density functional approximations commonly used in thermochemical and mechanistic studies. Second, we assess our basis set incompleteness potentials regarding their ability to mitigate basis set incompleteness errors. The number of data points, the diversity of the reactions considered, and the relatively large size of the reactant molecules make BH9 the most comprehensive thermochemical benchmark set to date and a useful tool for the development and assessment of computational methods.

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