| Literature DB >> 30413060 |
Sayed M Riyadh1,2, Khaled D Khalil3,4, Ateyatallah Aljuhani5.
Abstract
A chitosan-MgO hybrid nanocomposite was prepared using a simple chemical precipitation method and characterized using Fourier transform spectroscopy (FTIR), elemental analysis (EDX), and scanning electron microscopy (SEM). The nanocomposite was served as a powerful ecofriendly basic catalyst under microwave irradiation in the synthesis of two novel series of 5-arylazo-2-hydrazonothiazoles 4a⁻j and 2-hydrazono[1,3,4]thiadiazoles 8a⁻d, incorporating a sulfonamide group. The structures of the synthesized products were elucidated by spectral data and elemental analyses. Also, their yield percentages were calculated using triethylamine (as a traditional catalyst) and chitosan-MgO nanocomposite (as a green recyclable catalyst) in a comparative study.Entities:
Keywords: chitosan-MgO nanocomposite; ethylidenethiosemicarbazides; heterogeneous catalysis; thiadiazoles; thiazoles
Year: 2018 PMID: 30413060 PMCID: PMC6266359 DOI: 10.3390/nano8110928
Source DB: PubMed Journal: Nanomaterials (Basel) ISSN: 2079-4991 Impact factor: 5.076
Figure 1Structure of a chitosan-MgO nanocomposite.
Figure 2FTIR of chitosan (A) and the chitosan-MgO nanocomposite (B).
Figure 3FESEM images of chitosan (A), and chitosan-MgO 10 wt% (B).
Figure 4EDX spectra of the 10 wt% chitosan-MgO nanocomposite hybrid film. Inset is the quantitative result.
Figure 5Optimization of the chitosan graft copolymer as a basic catalyst.
Recyclability of the chitosan graft copolymer as basic catalyst.
| State of Catalyst | Fresh Catalyst | Recycled (1) | Recycled (2) | Recycled (3) | Recycled (4) |
|---|---|---|---|---|---|
|
| 85 | 84 | 83 | 83 | 82 |
Scheme 1Synthesis of hydrazonothiazoles 4a–j.
Effect of the nature of basic catalyst on the yield of the products 4a–j.
| Compound Number | Ar2 | Time (min) | Yield (%) | |
|---|---|---|---|---|
| Et3N | Chitosan-MgO Nanocomposite | |||
|
| C6H5 | 30 | 76 | 85 |
|
| 2-CH3C6H4 | 30 | 73 | 85 |
|
| 2-ClC6H4 | 35 | 77 | 86 |
|
| 3-CH3C6H4 | 30 | 82 | 96 |
|
| 4-CH3C6H4 | 30 | 78 | 87 |
|
| 4-CH3OC6H4 | 40 | 73 | 83 |
|
| 4-NO2C6H4 | 40 | 69 | 81 |
|
| 4-BrC6H4 | 40 | 70 | 81 |
|
| 4-FC6H4 | 40 | 71 | 80 |
|
| 4-CH3COC6H4 | 40 | 72 | 84 |
Scheme 2Synthesis of hydrazono[1,3,4]thiadiazoles 8a–d.
Effect of the nature of basic catalyst on the yield of the products 8a–d.
| Compound Number | Ar2 | Ar3 | Time (min) | Yield (%) | |
|---|---|---|---|---|---|
| Et3N | Chitosan/MgO Nanocomposite | ||||
|
| C6H5 | C6H5 | 30 | 74 | 86 |
|
| C6H5 | 4-NO2C6H4 | 35 | 76 | 88 |
|
| 4-CH3C6H4 | C6H5 | 40 | 79 | 85 |
|
| 4-CH3OC6H4 | C6H5 | 40 | 78 | 87 |