Kashinski D O, Chase G M, Nelson R G, Di Nallo O E, Scales A N, VanderLey D L, Byrd E F C
Department of Physics and Nuclear Engineering, US Military Academy , West Point, New York 10996, United States.
Weapons and Materials Research Directorate, Army Research Laboratories , Aberdeen Proving Grounds, Maryland 21005, United States.
J Phys Chem A. 2017 Mar 23;121(11):2265-2273. doi: 10.1021/acs.jpca.6b12147. Epub 2017 Mar 9.
We propose new approximate global multiplicative scaling factors for the DFT calculation of ground state harmonic vibrational frequencies using functionals from the TPSS, M06, and M11 functional families with standard correlation consistent cc-pVxZ and aug-cc-pVxZ (x = D, T, and Q), 6-311G split valence family, Sadlej and Sapporo polarized triple-ζ basis sets. Results for B3LYP, CAM-B3LYP, B3PW91, PBE, and PBE0 functionals with these basis sets are also reported. A total of 99 harmonic frequencies were calculated for 26 gas-phase organic and nonorganic molecules typically found in detonated solid propellant residue. Our proposed approximate multiplicative scaling factors are determined using a least-squares approach comparing the computed harmonic frequencies to experimental counterparts well established in the scientific literature. A comparison of our work to previously published global scaling factors is made to verify method reliability and the applicability of our molecular test set.
我们提出了新的近似全局乘法缩放因子,用于使用来自TPSS、M06和M11泛函族的泛函,结合标准的相关一致cc-pVxZ和aug-cc-pVxZ(x = D、T和Q)、6-311G分裂价电子族、Sadlej和札幌极化三重ζ基组,来计算基态谐波振动频率的密度泛函理论(DFT)。还报告了使用这些基组的B3LYP、CAM-B3LYP、B3PW91、PBE和PBE0泛函的结果。对于通常在引爆固体推进剂残渣中发现的26种气相有机和无机分子,总共计算了99个谐波频率。我们提出的近似乘法缩放因子是通过最小二乘法确定的,即将计算得到的谐波频率与科学文献中已确立的实验对应值进行比较。将我们的工作与先前发表的全局缩放因子进行比较,以验证方法的可靠性和我们分子测试集的适用性。