| Literature DB >> 35541274 |
Shengzhen Liu1, Ti Wu2, Qi Zhu1, Jialing Pu2, Guangxue Chen1, Weimin Zhang2, Zhongxiao Li2.
Abstract
A synthetic route towards symmetric and asymmetric thiophenoazomethines was accomplished by reaction of the readily available amine with various aldehydes. Investigation of a series of thiophenoazomethines obtained by this method indicates that the terminal groups and the degree of conjugation have a great effect on the electronic absorption and energy levels of the conjugated compounds, particularly the effect of terminal groups. The terminal withdrawing and donating groups of thiophenoazomethines led to the formation of an electronic push-pull, push-push and pull-pull system, which can perturb the electronic transitions between the ground and excited states. The flexible chain substituents on the thiophene units, which improve its solubility, also result in bathochromic absorption, but have limited effect on the energy level. This journal is © The Royal Society of Chemistry.Entities:
Year: 2018 PMID: 35541274 PMCID: PMC9079336 DOI: 10.1039/c8ra00570b
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Scheme 1The structures of conjugated thiophenoazomethine compounds.
Scheme 2Synthesis of thiophenoazomethines compounds 3–10.
Scheme 3Synthesis of thiophenoazomethines compounds 11 and 12.
Fig. 1Photograph of conjugated compounds 3–12 in trichloromethane (5 × 10−4 M).
Fig. 2UV-visible absorption spectra of compounds 3–12 in trichloromethane.
Fig. 3Thermogravimetric analysis of conjugated compounds 3–12 measured at a heating rate of 10 °C min−1 under nitrogen.
Fig. 4Cyclic voltammetry of conjugated thiophenoazomethines 4 and 8 at (1.0 × 10−4 M) concentration in dry dichloromethane.
Electrochemical properties of conjugated compounds 3–12
| Compound |
|
| HOMO |
| LUMO |
|
|---|---|---|---|---|---|---|
| 3 | 485 | 0.88 | −5.28 | −0.75 | −3.65 | 1.63 |
| 4 | 505 | 0.90 | −5.30 | −0.59 | −3.81 | 1.49 |
| 5 | 489 | 0.76 | −5.16 | −0.80 | −3.60 | 1.56 |
| 6 | 595 | 1.01 | −5.41 | −0.54 | −3.86 | 1.55 |
| 7 | 551 | 1.18 | −5.58 | −0.68 | −3.72 | 1.86 |
| 8 | 560 | 1.22 | −5.62 | −0.64 | −3.76 | 1.86 |
| 9 | 580 | 0.90 | −5.30 | −0.83 | −3.57 | 1.73 |
| 10 | 590 | 1.30 | −5.70 | −0.33 | −4.07 | 1.63 |
| 11 | 565 | 1.20 | −5.60 | −0.61 | −3.79 | 1.81 |
| 12 | 565 | 1.20 | −5.60 | −0.61 | −3.79 | 1.81 |
HOMO = −(Eonsetoxid + 4.40).
LUMO = −(Eonsetred + 4.40).
E g = LUMO − HOMO.