The M06 suite of density functionals for main group thermochemistry, thermochemical kinetics, noncovalent interactions, excited states, and transition elements: two new functionals and systematic testing of four M06-class functionals and 12 other functionals
Набор функционалов плотности M06 для термохимии главной подгруппы, термохимической кинетики, нековалентных взаимодействий, возбужденных состояний и переходных элементов: два новых функционала и систематическое тестирование четырех функционалов класса M06 и 12 других функционалов
2007-07-12
SCID: 54.1/nn5rcvts
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M06 functionalM06 suiteM06-2X functionalM06-HF functionalM06-L functionalbenchmarking across 29 databasesdouble nonlocal exchange (2X)electronic excitation energieshybrid meta exchange-correlation functionalsmain-group thermochemistrynoncovalent interactionsthermochemical kineticstransition metal bondingtransition metalsvalence and Rydberg states
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Abstract (AI)
We present two new hybrid meta exchange- correlation functionals, called M06 and M06-2X. The M06 functional is parametrized including both transition metals and nonmetals, whereas the M06-2X functional is a high-nonlocality functional with double the amount of nonlocal exchange (2X), and it is parametrized only for nonmetals.The functionals, along with the previously published M06-L local functional and the M06-HF full-Hartree–Fock functionals, constitute the M06 suite of complementary functionals. We assess these four functionals by comparing their performance to that of 12 other functionals and Hartree–Fock theory for 403 energetic data in 29 diverse databases, including ten databases for thermochemistry, four databases for kinetics, eight databases for noncovalent interactions, three databases for transition metal bonding, one database for metal atom excitation energies, and three databases for molecular excitation energies. We also illustrate the performance of these 17 methods for three databases containing 40 bond lengths and for databases containing 38 vibrational frequencies and 15 vibrational zero point energies. We recommend the M06-2X functional for applications involving main-group thermochemistry, kinetics, noncovalent interactions, and electronic excitation energies to valence and Rydberg states. We recommend the M06 functional for application in organometallic and inorganometallic chemistry and for noncovalent interactions.
Key Findings
1
Based on benchmarking, M06-2X is recommended for main-group thermochemistry, kinetics, noncovalent interactions, and valence/Rydberg electronic excitation energies, while M06 is recommended for transition-metal (organometallic/inorganometallic) chemistry and noncovalent interactions.
2
M06 is parametrized including both transition metals and nonmetals, making it suitable for organometallic and inorganometallic chemistry.
3
M06-2X is a high-nonlocality functional with double the nonlocal exchange (2X) and is parametrized only for nonmetals, recommended for main-group chemistry.
4
The M06 suite (M06, M06-2X, M06-L, M06-HF) was systematically tested against 12 other functionals and Hartree–Fock over 403 energetic data points across 29 diverse databases covering thermochemistry, kinetics, noncovalent interactions, transition metal bonding, and excitation energies.
5
Two new hybrid meta exchange-correlation functionals, M06 and M06-2X, are presented and parametrized for different chemical domains.
Research Object
The M06 suite of density functionals (M06, M06-2X, M06-L, M06-HF) and 12 other density functionals plus Hartree–Fock
Research Subject
Systematic assessment of their performance for main-group thermochemistry, thermochemical kinetics, noncovalent interactions, excited states, transition-metal bonding, atom excitation energies, bond lengths, vibrational frequencies, and vibrational zero-point energies across diverse benchmark databases
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2007-07-12
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