Department of Chemistry, Alwajh College, University of Tabuk, Tabuk, Saudi Arabia.
Luminescence. 2023 May;38(5):546-553. doi: 10.1002/bio.4478. Epub 2023 Apr 13.
A series of donor-π-acceptor dicyanomethylenedihydrofuran (DCDHF)-based chromophores comprising different π-aryl bridges and different terminal groups was synthesized and characterized. The chromophores were synthesized via Knoevenagel condensation of the active methyl-bearing DCDHF (electron acceptor) with a tertiary amine-containing arylaldehyde (electron donor) in dry pyridine at room temperature in the presence of a few drops of acetic acid. The synthesis approach involved the development of phenyl(thienyl)vinyl-bridged dicyanomethylenedihydrofuran dyes with a tertiary amine terminal group. Both absorption and emission spectra were explored. The strong emission properties detected using the synthesized chromophores could be attributed to intramolecular charge transfer. The chemical structures of the synthesized chromophores were verified using H/ C nuclear magnetic resonance and Fourier transform infrared spectroscopy. Both tertiary amine-containing and arylaldehyde groups were found to influence the biological properties of the synthesized chromophores. The synthesized (DCDHF)-based hybrids were tested to examine antibacterial effectiveness. Derivatives 1 and 2 demonstrated activity towards Gram-positive bacteria rather than Gram-negative bacteria when compared with an amoxicillin antibiotic reference. Finally, molecular docking inspiration was undertaken to determine their binding relationships (PDB code: 1LNZ).
合成了一系列供体-π-受体二氰亚甲基二氢呋喃(DCDHF)基发色团,包括不同的π-芳基桥和不同的末端基团。这些发色团是通过活性甲基 DCDHF(电子受体)与含叔胺的芳醛(电子供体)在吡啶中室温下进行 Knoevenagel 缩合反应合成的,在反应中加入几滴乙酸。合成方法涉及开发带有叔胺末端基团的苯(噻吩基)乙烯基桥联二氰亚甲基二氢呋喃染料。研究了它们的吸收和发射光谱。使用合成的发色团检测到的强发射性质可归因于分子内电荷转移。使用 1 H/ 13 C 核磁共振和傅里叶变换红外光谱验证了合成的发色团的化学结构。发现含叔胺基团和芳醛基团都影响合成的发色团的生物性质。对合成的(DCDHF)基杂化物进行了测试,以检查其抗菌效果。与阿莫西林抗生素参考物相比,衍生物 1 和 2 对革兰氏阳性菌表现出活性,而对革兰氏阴性菌没有活性。最后,进行了分子对接以确定它们的结合关系(PDB 代码:1LNZ)。