| Literature DB >> 26800989 |
Aneta Buczek1, Teobald Kupka2, Małgorzata A Broda3, Adriana Żyła3,4,5.
Abstract
In this work, regular convergence patterns of the structural, harmonic, and VPT2-calculated anharmonic vibrational parameters of ethylene towards the Kohn-Sham complete basis set (KS CBS) limit are demonstrated for the first time. The performance of the VPT2 scheme implemented using density functional theory (DFT-BLYP and DFT-B3LYP) in combination with two Pople basis sets (6-311++G** and 6-311++G(3df,2pd)), the polarization-consistent basis sets pc-n, aug-pc-n, and pcseg-n (n = 0, 1, 2, 3, 4), and the correlation-consistent basis sets cc-pVXZ and aug-cc-pVXZ (X = D, T, Q, 5, 6) was tested.The BLYP-calculated harmonic frequencies were found to be markedly closer than the B3LYP-calculated harmonic frequencies to the experimentally derived values, while the calculated anharmonic frequencies consistently underestimated the observed wavenumbers. The different basis set families gave very similar estimated values for the CBS parameters. The anharmonic frequencies calculated with B3LYP/aug-pc-3 were consistently significantly higher than those obtained with the pc-3 basis set; applying the aug-pcseg-n basis set family alleviated this problem. Utilization of B3LYP/aug-pcseg-n basis sets instead of B3LYP/aug-cc-pVXZ, which is computationally less expensive, is suggested for medium-sized molecules. Harmonic BLYP/pc-2 calculations produced fairly accurate ethylene frequencies. Graphical Abstract In this study, the performance of the VPT2 scheme implemented using density functional theory (DFT-BLYP and DFT-B3LYP) in combination with the polarization-consistent basis sets pc-n, aug-pc-n, and pcseg-n (n = 0, 1, 2, 3, 4), and the correlation-consistent basis sets cc-pVXZ and aug-cc-pVXZ (X = D, T, Q, 5, and 6) was tested. For the first time, we demonstrated regular convergence patterns of the structural, harmonic, and VPT2-calculated anharmonic vibrational parameters of ethylene towards the Kohn-Sham complete basis set (KS CBS) limit.Entities:
Keywords: Anharmonic vibration; CBS; Correlation-consistent basis sets; DFT; Ethylene; Polarization-consistent basis sets; VPT2
Year: 2016 PMID: 26800989 PMCID: PMC4723629 DOI: 10.1007/s00894-015-2902-z
Source DB: PubMed Journal: J Mol Model ISSN: 0948-5023 Impact factor: 1.810
Structural parameters of ethylene, calculated using the BLYP and B3LYP density functionals in combination with selected basis sets
| Method/basis set | C=C length (Å) | C–H length (Å) | C–C–H angle (°) |
|---|---|---|---|
| B3LYP | |||
| 6-311++G** | 1.3289 | 1.0850 | 121.74 |
| 6-311++G(3df,2pd) | 1.3247 | 1.0823 | 121.74 |
| CBS (pc- | 1.3240 | 1.0815 | 121.73 |
| CBS (aug-pc- | 1.3239 | 1.0815 | 121.74 |
| CBS (pcseg- | 1.3241 | 1.0818 | 121.73 |
| CBS (aug-pcseg- | 1.3241 | 1.0818 | 121.74 |
| CBS (cc-pVXZ) | 1.3241 | 1.0818 | 121.74 |
| CBS (aug-cc-pVXZ) | 1.3241 | 1.0818 | 121.74 |
| BLYP | |||
| 6-311++G** | 1.3384 | 1.0915 | 121.79 |
| 6-311++G(3df,2pd) | 1.3341 | 1.0887 | 121.79 |
| CBS (pc- | 1.3335 | 1.0877 | 121.78 |
| CBS (aug-pc- | 1.3334 | 1.0877 | 121.79 |
| CBS (cc-pVXZ) | 1.3337 | 1.0882 | 121.79 |
| CBS (aug-cc-pVXZ) | 1.3337 | 1.0882 | 121.79 |
| From the literature: | |||
| Best composite theorya | 1.3307 | 1.0809 | 121.44 |
| Best composite theoryb | 1.3308 | 1.0803 | 121.40 |
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The CBS values were estimated using a two-parameter fit (Eq. 2)
a From [44]; b from [46]; c from [47];
Fig. 1a–cSensitivity of the BLYP- and B3LYP-calculated ethylene C=C (a) and C–H (b) bond lengths, as well as the C–C–H bond angle (c), to the quality of the basis set. Continuous lines mark experimental values [47], and the results of CBS fits are also shown
Fig. 2a–bSensitivity of the BLYP- and B3LYP-calculated values for the ethylene ν(C=C) vibrational frequency to the quality of the basis set when predictions are made using the harmonic (a) and anharmonic (b) approximations. A continuous line indicates the experimental value [47], and the CBS fitting results are also shown
Deviations of calculated CBS values for the ethylene C=C stretching vibrational frequency from the corresponding experimentally derived value [62, 63, 72]
| Basis set | BLYP | B3LYP | ||
|---|---|---|---|---|
| Harmonic | Anharmonic | Harmonic | Anharmonic | |
| pc- | 9.36 | −32.67 | 63.65 | 20.25 |
| aug-pc- | 9.41 | −32.80 | 63.70 | 7.00 |
| cc-pVXZ | 8.74 | −37.26 | 63.74 | 23.27 |
| aug-cc-pVXZ | 9.14 | −37.75 | 63.69 | 9.22 |
| pcseg- | - | - | 63.58 | 18.31 |
| aug-pcseg- | - | - | 63.63 | 16.94 |
RMS deviations of calculated CBS frequencies for ethylene from the corresponding experimentally derived frequencies [62, 63, 72]
| Basis set | BLYP | B3LYP | ||
|---|---|---|---|---|
| Harmonic | Anharmonic | Harmonic | Anharmonic | |
| pc- | 26.04 | 62.96 | 76.90 | 16.42 |
| aug-pc- | 26.04 | 63.53 | 76.92 | 58.25a |
| cc-pVXZ | 25.99 | 62.56 | 76.90 | 18.15 |
| aug-cc-pVXZ | 26.13 | 67.15 | 76.96 | ~31.5a |
| pcseg- | - |
| 76.86 | 20.87 |
| aug-pcseg- | - |
| 76.83 | 23.63 |
a The RMS deviations are high in these cases because the values obtained using aug-pc-3 are much too high or because there is considerable scatter in the results afforded by aug-cc-pVXZ
Fig. 3a Convergence of the BLYP- and B3LYP-calculated energies of ethylene toward the Kohn–Sham limit when using the pc-n and aug-pc-n basis set families. b Convergence of the raw and anharmonic ZPVE values calculated using BLYP/pc-n
Calculated CBS values of the raw and anharmonic ZPV energies (kcal/mol)
| Basis set | BLYP | B3LYP | ||
|---|---|---|---|---|
| Harmonic | Anharmonic | Harmonic | Anharmonic | |
| cc-pVXZ | 31.112 | 30.678 | 31.957 | 31.567 |
| aug-cc-pVXZ | 31.109 | 30.587 | 31.567 | ~31.5a |
| pc- | 31.361 | 30.941 | 32.208 | 31.776 |
| aug-pc- | 31.368 | 30.957 | 32.216 | 31.796a |
| pcseg- | - | - | 31.937 | 31.518 |
| aug-pcseg- | - | - | 31.944 | 31.528 |
| From the literature: | ||||
| CCSD(T)/aQZ | 32.048b | |||
a There was scatter in some of the B3LYP/aug-cc-pVXZ results, and the aug-pc-4 result is shown for aug-pc-n because the aug-pc-3 result is significantly larger than the pc-3 result
b The CCSD(T)/aQZ-calculated harmonic result from NIST is shown for comparison [76]
CPU times (in days, hours, and minutes) required for ethylene optimization and anharmonic frequency calculations performed using the B3LYP density functional along with Dunning and segmented polarization-consistent basis sets
| Number of basis functions | CPU timea | ||||||
|---|---|---|---|---|---|---|---|
| Optimization | Anharmonic frequencies | ||||||
| Dunning basis sets |
| cc-pV | aug-cc-pV | cc-pV | aug-cc-pV | cc-pV | aug-cc-pV |
| 2 | 48 | 82 | 8 m | 8 m | 1 h 47 m | 3 h 35 m | |
| 3 | 116 | 184 | 14 m | 16 m | 6 h 3 m | 15 h 44 m | |
| 4 | 230 | 344 | 29 m | 54 m | 1 d 2 h 17 m | 3 d 13 h 26 m | |
| 5 | 402 | 574 | 1 h 48 m | 6 h 59 m | 6 d 5 h 20 m | 30 d 19 h 37 m | |
| 6 | 644 | 886 | 13 h 51 m | 4 d 15 h 34 m | 53 d 1 h 37 m | 226 d 19 h 14 m | |
| Number of basis functions | Optimization | Anharmonic frequencies | |||||
| Polarization-consistent basis sets |
| pcseg- | aug-pcseg- | pcseg- | aug-pcseg- | pcseg- | aug-pcseg- |
| 0 | 26 | 38 | 7 m | 6 m | 1 h 7 m | 1 h 27 m | |
| 1 | 48 | 82 | 7 m | 9 m | 1 h 44 m | 3 h 28 m | |
| 2 | 116 | 184 | 15 m | 19 m | 5 h 54 m | 15 h 49 m | |
| 3 | 252 | 366 | 34 m | 1 h 2 m | 1 d 6 g 3 h | 4 d 2 h 6 m | |
| 4 | 446 | 618 | 2 h 41 m | 1 d 27 m | 8 d 4 h 27 m | 42 d 15 h 45 m | |
a Calculations were performed using 24 processors and 50 GB of memory