| Literature DB >> 31058873 |
Abstract
The 1H chemical shielding anisotropy (CSA) is an NMR parameter that is exquisitely sensitive to the local environment of protons in crystalline systems, but it is difficult to obtain it experimentally due to the need to concomitantly suppress other anisotropic interactions in the solid-state NMR (SSNMR) pulse sequences. The SSNMR measurements of the 1H CSA are particularly challenging if the fast magic-angle-spinning (MAS) is applied. It is thus important to confront the results of both the single-crystal (SC) and fast-MAS experiments with their theoretical counterparts. Here the plane-waves (PW) DFT calculations have been carried out using two functionals in order to precisely characterize the structures and the 1H NMR chemical shielding tensors (CSTs) of the solid forms of maleic, malonic, and citric acids, and of L-histidine hydrochloride monohydrate. The level of agreement between the PW DFT and either SC or fast-MAS SSNMR 1H CSA data has been critically compared. It has been found that for the eigenvalues of the 1H CSTs provided by the fast-MAS measurements, an accuracy limit of current PW DFT predictions is about two ppm in terms of the standard deviation of the linear regression model, and sources of this error have been thoroughly discussed.Entities:
Keywords: GIPAW; MAS NMR; chemical shielding anisotropy; plane-waves DFT
Mesh:
Substances:
Year: 2019 PMID: 31058873 PMCID: PMC6539467 DOI: 10.3390/molecules24091731
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Statistical evaluation of the agreement between the GIPAW-PBE (in parentheses, the GIPAW-revPBE) chemical shieldings and experimental chemical shifts for protons of maleic and malonic acids.
| Parameter | Isotropic | Eigenvalues |
|---|---|---|
| slope | –1.255 | –1.211 |
| (–1.194) | (–1.159) | |
| standard error of slope | 0.034 | 0.026 |
| (0.030) | (0.024) | |
| intercept/(ppm) | 28.78 | 28.47 |
| (28.88) | (28.64) | |
| standard error of intercept/(ppm) | 0.28 | 0.28 |
| (0.25) | (0.26) | |
| standard deviation/(ppm) | 0.39 | 1.03 |
| (0.34) | (0.96) | |
| average absolute deviation/(ppm) | 0.30 | 0.81 |
| (0.30) | (0.77) | |
| maximum absolute deviation/(ppm) | 0.73 | 2.43 |
| (0.55) | (2.26) | |
| adjusted | 0.9949 | 0.9895 |
| (0.9956) | (0.9899) | |
| number of data points | 8 | 24 |
| (8) | (24) |
Figure 1The correlation of the calculated and experimental values of the principal elements of the 1H chemical shielding/shift tensors in maleic and malonic acids.
Statistical evaluation of the agreement between the GIPAW-PBE (in parentheses, the GIPAW-revPBE) {1H, 13C, 1N} chemical shielding data and their experimental counterparts for l-histidine hydrochloride monohydrate.
| Parameter | 1H isotropic | 13C isotropic | 15N eigenvalues |
|---|---|---|---|
| slope | –1.108 | –1.019 | –1.047 |
| (–1.121) | (–1.016) | (–1.057) | |
| standard error of slope | 0.019 | 0.010 | 0.028 |
| (0.020) | (0.010) | (0.032) | |
| intercept/ (ppm) | 31.43 | 171.72 | 206.5 |
| (31.80) | (171.71) | (204.8) | |
| standard error of intercept/(ppm) | 0.19 | 1.23 | 5.2 |
| (0.19) | (1.22) | (5.9) | |
| standard deviation/(ppm) | 0.21 | 1.15 | 5.6 |
| (0.21) | (1.15) | (6.4) | |
| average absolute deviation/(ppm) | 0.16 | 0.76 | 4.6 |
| (0.19) | (0.73) | (5.3) | |
| maximum absolute deviation/(ppm) | 0.30 | 2.15 | 7.8 |
| (0.26) | (2.16) | (9.6) | |
| adjusted | 0.9982 | 0.9995 | 0.9964 |
| (0.9982) | (0.9995) | (0.9954) | |
| number of data points | 7 | 6 | 6 |
| (7) | (6) | (6) |
Statistical evaluation of the agreement between the theoretical differences and their experimental counterparts for the 1H sites in cationic l-histidine (15 data points).
| Parameter | GIPAW-PBE | GIPAW-revPBE |
|---|---|---|
| slope | 1.049 | 1.053 |
| standard error of slope | 0.079 | 0.080 |
| intercept/(ppm) | –0.007 | –0.007 |
| standard error of intercept/(ppm) | 0.550 | 0.554 |
| standard deviation/(ppm) | 2.05 | 2.07 |
| average absolute deviation/(ppm) | 4.65 | 4.63 |
| maximum absolute deviation/(ppm) | 1.36 | 1.38 |
| adjusted | 0.9258 | 0.9249 |
Figure 2The correlation of the calculated and experimental differences between the values of the isotropic chemical shift/shielding and of the respective principal element of the 1H chemical shift/shielding tensors in L-histidine hydrochloride monohydrate.
Statistical evaluation of the agreement between predicted eigenvalues of the 1H chemical shielding tensors and experimentally established eigenvalues of the 1H chemical shift tensors of the four proton sites in citric acid (12 data points).
| Parameter | GIPAW-PBE | GIPAW-revPBE | GIAO-B3LYP |
|---|---|---|---|
| slope | –1.151 | –1.095 | –1.183 |
| standard error of slope | 0.052 | 0.048 | 0.075 |
| intercept/(ppm) | 30.23 | 30.56 | 31.31 |
| standard error of intercept/(ppm) | 0.75 | 0.69 | 1.07 |
| standard deviation/(ppm) | 1.77 | 1.63 | 2.54 |
| average absolute deviation/(ppm) | 1.34 | 1.22 | 1.92 |
| maximum absolute deviation/(ppm) | 3.15 | 2.97 | 5.20 |
| adjusted | 0.9779 | 0.9793 | 0.9580 |
Figure 3The molecular cluster of citric acid. In the central molecule, an orientation of the eigenvectors of the 1H chemical shielding tensors is shown (the eigenvectors associated with the smallest, mid, and highest eigenvalues are colored in magenta, cyan, and green, respectively).
Angles between vectors in citric acid that are discussed in the text.
| Direction |
|
|
|
|---|---|---|---|
|
| 47° | 118° | 74° |
| 56° | 125° | 77° |