| Literature DB >> 35516155 |
Abbasriyaludeen Abdul Raheem1,2, Sivalingam Gopi3, Murugavel Kathiresan3,2, Chandrasekar Praveen1,2.
Abstract
The synthesis of different π-spacered thiophene comonomers via Suzuki cross-coupling in good synthetic yields was accomplished. Potentiodynamic electropolymerization of these precursors on ITO electrode by constant potential electrolysis results in the deposition of thin films of polymers between 0.05 and 0.2 μM. Interestingly, the as synthesized π-conjugated polymers exhibit electrochromic behaviour upon electrochemical oxidation. On the application side, the synthesized electropolymers showed catalytic activity better than glassy carbon towards electrochemical reduction of nitrobenzene. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35516155 PMCID: PMC9059767 DOI: 10.1039/c8ra08603f
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Scheme 1Suzuki coupling of dihalo-π-spacers 1a–h with 3-hexylthiophene boronic acid 2.
Synthesis and chemical yield of monomers 3a–f
| Precursor |
| X | Monomer | Yield | Polymer |
|---|---|---|---|---|---|
| 1a |
| Br | 3a | 95 | 4a |
| 1b |
| Br | 3b | 94 | 4b |
| 1c |
| I | 3c | 92 | 4c |
| 1d |
| I | 3d | 89 | 4d |
| 1e |
| I | 3e | 97 | 4e |
| 1f |
| Br | 3f | 76 | 4f |
| 1g |
| Br | 3g | 82 | 4g |
| 1h |
| Br | 3h | 85 | 4h |
Isolated yield after column chromatography and characterized by IR, 1H NMR, 13C NMR and MS.
Fig. 1Potentiodynamic electropolymerisation of 3a–h against Ag/AgCl on GC electrode using nBu4NPF6 (0.1 M) in CH2Cl2.
Fig. 2(a) UV-visible absorption spectra of 3a–h in THF solution (5 × 10−5 M); (b) normalized emission spectra of 3a–h in THF solution.
Optical properties of monomers 3a–f
| Monomer |
|
|
|
|
|
| Stokes | Polymer |
|
|
|---|---|---|---|---|---|---|---|---|---|---|
| 3a | 329/374 | 49 200 | 3.31 | 335/384 | 3.22 | 403 | 5600 | 4a | 461/579 | 2.14 |
| 3b | 329/374 | 42 800 | 3.31 | 337/384 | 3.22 | 402 | 5500 | 4b | 459/572 | 2.16 |
| 3c | 295/417 | 48 000 | 2.97 | 302/425 | 2.91 | 442 | 11 300 | 4c | 373/433 | 2.86 |
| 3d | 309/352 | 46 500 | 3.52 | 309/389 | 3.18 | 398 | 7200 | 4d | 462/577 | 2.14 |
| 3e | 298/338 | 29 000 | 3.66 | 302/349 | 3.55 | 387 | 7700 | 4e | 460/581 | 2.13 |
| 3f | 329/374 | 35 700 | 3.31 | 341/394 | 3.14 | 401 | 5500 | 4f | 462/574 | 2.16 |
| 3g | 348/405 | 136 000 | 3.06 | 360/433 | 2.86 | 441 | 6060 | 4g | 412/510 | 2.43 |
| 3h | 368/422 | 239 900 | 2.93 | 415/527 | 2.35 | 458 | 5300 | 4h | 429/534 | 2.32 |
Absorption in solution.
Band gap in solution was determined from λedge using, Eoptg (eV) 1240/λedge.
Absorption in thin films.
Optical band gap was determined from λedge in thin solid films using, Eoptg (eV) = 1240/λedge.
Emission in solution.
Stokes shift was calculated from the difference between λmax and λem.
Fig. 3Reduction of nitrobenzene on GC and polymer modified GC electrodes in PBS.