| Literature DB >> 24132196 |
Na-Bo Sun1, Jian-Qun Fu, Jian-Quan Weng, Jian-Zhong Jin, Cheng-Xia Tan, Xing-Hai Liu.
Abstract
In order to investigate the biological activity of 1,2,4-triazole compounds, seventeen novel 1,2,4-triazole derivatives containing 1,2,3-thiadiazole moieties were synthesized by multi-step reactions under microwave assisted conditions. The structures were characterized by 1H-NMR, 13C-NMR, MS and elemental analyses. The target compounds were evaluated for their in vivo fungicidal activities against Corynespora cassiicola, Pseudomonas syringae pv. Lachrymans, and Pseudoperonospora cubensis, and the results indicated that some of the title compounds displayed good fungicidal activities. Theoretical calculations on the title compounds were carried out at the B3LYP/6-31G (d,p). level. The full geometry optimization was carried out using the 6-31G(d,p) basis set, and the frontier orbital energy, atomic net charges were discussed, and the structure-activity relationships were also studied.Entities:
Mesh:
Substances:
Year: 2013 PMID: 24132196 PMCID: PMC6270153 DOI: 10.3390/molecules181012725
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Commercial drugs and pesticides containing 1,2,4-triazole groups.
Figure 2Some commercial pesticides containing 1,2,3-thiadiazoles.
Scheme 1The synthetic route of title compounds.
Comparison of yields of 7b with or without microwave irradiation.
| No. | Method | Time | Temperature/°C | Yield/% |
|---|---|---|---|---|
| No-MW | 24 h | r.t. | 78 | |
| MW | 10 min | 90 | 80 | |
| MW | 15 min | 90 | 85 | |
| MW | 20 min | 90 | 83 |
The antifungal activity of title compounds in vivo.
| No. | R1 | R2 | |||
|---|---|---|---|---|---|
| Ph | 2,4-Cl2Ph | 72.97 | −1.71 | 50.34 | |
| Ph | Ph | 93.19 | 60.67 | 54.51 | |
| Ph | 4-F Ph | 82.77 | 55.08 | 44.40 | |
| Ph | 3-Cl Ph | 82.30 | 53.92 | 39.15 | |
| Ph | 3-F Ph | 46.90 | 36.71 | 71.03 | |
| Ph | 2-F Ph | 75.93 | 17.59 | 52.88 | |
| Ph | 4-MePh | 84.96 | 47.16 | 68.79 | |
| Ph | 4-Et Ph | 70.17 | 11.49 | 19.65 | |
| Ph | CH3CH2 | 75.22 | 48.20 | 42.25 | |
| Ph | 2-Cl Ph | 75.15 | 61.48 | 28.64 | |
| Ph | CN | 75.75 | 67.06 | 26.15 | |
| Ph | 4-Bu Ph | 59.92 | 61.00 | 49.38 | |
| Ph | 70.64 | 63.09 | 18.28 | ||
| Ph | 3,4-Cl2Ph | 71.07 | 79.76 | 39.35 | |
| 3-CN Ph | 28.99 | 24.41 | 69.17 | ||
| 21.38 | 6.47 | 71.07 | |||
| 54.03 | 30.17 | 81.62 | |||
| iprodione | 53.52 | 38.49 | 55.92 | ||
| validamycin | 78.20 | −11.42 | 56.31 | ||
| topsin-M | 78.75 | 54.15 | 68.71 |
(a) CC: Corynespora cassiicola; PS: Pseudomonas syringae pv. Lachrymans; PC: Pseudoperonospora cubensis; (b) The test concentration of antifungal activity is at 500 mg/mL.
Total energy, frontier orbital energy.
| DFT | |
|---|---|
| −1765.0575 | |
| −0.221 | |
| −0.069 | |
| Δ | 0.152 |
a ΔE= ELUMO−EHOMO; b 1 Hartree = 4.35974417 × 10−18 J = 27.2113845 eV.
Figure 3The HOMO and LUMO of compound 7b.
Mulliken atomic charges except for H atoms (e).
| Atom | Charge |
|---|---|
| DFT | |
| C1 | 0.150691 |
| C2 | 0.374005 |
| C3 | 0.208092 |
| C4 | −0.011153 |
| C5 | −0.003467 |
| C6 | −0.000164 |
| C7 | −0.000969 |
| C8 | 0.001182 |
| C9 | −0.123948 |
| C10 | 0.085700 |
| C11 | −0.009788 |
| C12 | 0.010835 |
| C13 | 0.013612 |
| C14 | 0.011859 |
| C15 | −0.010715 |
| C16 | −0.199074 |
| C17 | 0.267633 |
| C18 | 0.042000 |
| N1 | −0.339205 |
| N2 | −0.155032 |
| N3 | −0.504897 |
| N4 | −0.242781 |
| N5 | −0.267556 |
| S1 | 0.295248 |
| S2 | 0.407893 |