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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >On the Assessment of Some New Meta-Hybrid and Generalized Gradient Approximation Functionals for Calculations of Anharmonic Vibrational Frequency Shifts in Hydrogen-Bonded Dimers
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On the Assessment of Some New Meta-Hybrid and Generalized Gradient Approximation Functionals for Calculations of Anharmonic Vibrational Frequency Shifts in Hydrogen-Bonded Dimers

机译:关于氢键二聚体非谐振动频移计算的一些新的元混合和广义梯度逼近函数的评估

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The performance of some recently proposed DFT functionals by Truhlar’s group (mPW1B95, mPWLYP1W, PBELYP1W, and PBE1W [Dahlke, E. E.; Truhlar, D. G. J. Phys. Chem. B 2005, 109, 317. Zhao, Y.; Truhlar, D. G. J. Phys. Chem. A 2004, 108, 6908.]) was tested primarily with respect to computation of anharmonic vibrational frequency shifts upon hydrogen bond formation in small molecular/ionic dimers. Five hydrogenbonded systems with varying hydrogen bond strengths were considered: methanol-fluorobenzene, phenol-carbon monoxide in ground neutral (S0) and cationic (D0) electronic states, phenol-acetylene, and phenol-benzene(+). Anharmonic OH stretching frequency shifts were calculated from the computed vibrational potentials for free and hydrogen-bonded proton-donor molecules. To test the basis set convergence properties, all calculations were performed with 6-31++G(d,p) and 6-311++G(2df,2pd) basis sets. The mPW1B95 functional was found to perform remarkably better in comparison to more standard functionals (such as B3LYP, mPW1PW91, PBE1PBE) in the case of neutral dimers. In the case of cationic dimers, however, this is not always the case. With respect to prediction of anharmonic OH stretching frequency shifts upon ionization of free phenol, all DFT levels of theory outperform MP2. Some other aspects of the functional performances with respect to computation of interaction and dissociation energies were considered as well.
机译:Truhlar小组(mPW1B95,mPWLYP1W,PBELYP1W和PBE1W [Dahlke,EE; Truhlar,DGJ Phys.Chem.B 2005,109,317. Zhao,Y .; Truhlar,DGJ Phys。Chem。 (2004,108,6908。])主要是关于在小分子/离子二聚体中氢键形成后的非谐振动频率偏移的计算进行测试的。考虑了五个具有不同氢键强度的氢键系统:甲醇-氟苯,处于中性基态(S0)和阳离子(D0)电子态的苯酚-一氧化碳,苯酚-乙炔和苯酚-苯(+)。从计算出的自由键和氢键质子供体分子的振动势计算出非谐OH拉伸频移。为了测试基集的收敛性,所有计算均使用6-31 ++ G(d,p)和6-311 ++ G(2df,2pd)基集进行。发现在中性二聚体的情况下,与更多标准功能(例如B3LYP,mPW1PW91,PBE1PBE)相比,mPW1B95功能的性能明显更好。然而,在阳离子二聚体的情况下,并非总是如此。关于预测游离苯酚离子化后非谐OH拉伸频率的变化,理论上所有DFT均优于MP2。关于相互作用和解离能的计算,还考虑了功能性能的其他方面。

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