TY - JOUR
T1 - Ab initio study of the gas-phase structure and electronic properties of M-CH3(M=Li,Na) and M-CCH (M=Li,Na,K)
T2 - A combined post-Hartree-Fock and density functional theory study
AU - Scalmani, G.
AU - Brédas, J. L.
AU - Barone, V.
PY - 2000/1/15
Y1 - 2000/1/15
N2 - The structure of isolated, monomeric M-CH3(M=Li, Na) and M-CCH (M=Li, Na, K) has been recently determined by millimeter/submillimeter rotational spectroscopy. These accurate experimental results offer the opportunity for an extensive ab initio study of these molecules in order to assess the accuracy of the latest developments in density functional theory (DFT). As a general trend, DFT results from hybrid functional (B1LYP, mPW1PW91, and PBE0) are in very good agreement with experiment while conventional functionals (BLYP) show slightly larger errors. In addition, DFT methods show rapid basis set convergence, whereas post-HF techniques [MP2, QCISD, and CCSD(T)] give comparably good results only using large basis sets. The properties derived from the electron density are computed to a fairly similar accuracy by all methods, provided a large basis set is used. The importance of a proper treatment of electron correlation in the description of the bond between the carbon and the alkali metal atom is emphasized.
AB - The structure of isolated, monomeric M-CH3(M=Li, Na) and M-CCH (M=Li, Na, K) has been recently determined by millimeter/submillimeter rotational spectroscopy. These accurate experimental results offer the opportunity for an extensive ab initio study of these molecules in order to assess the accuracy of the latest developments in density functional theory (DFT). As a general trend, DFT results from hybrid functional (B1LYP, mPW1PW91, and PBE0) are in very good agreement with experiment while conventional functionals (BLYP) show slightly larger errors. In addition, DFT methods show rapid basis set convergence, whereas post-HF techniques [MP2, QCISD, and CCSD(T)] give comparably good results only using large basis sets. The properties derived from the electron density are computed to a fairly similar accuracy by all methods, provided a large basis set is used. The importance of a proper treatment of electron correlation in the description of the bond between the carbon and the alkali metal atom is emphasized.
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U2 - 10.1063/1.480671
DO - 10.1063/1.480671
M3 - Article
AN - SCOPUS:0000118021
SN - 0021-9606
VL - 112
SP - 1178
EP - 1191
JO - Journal of Chemical Physics
JF - Journal of Chemical Physics
IS - 3
ER -