Pop Flavia, Seifert Sabine, Hankache Jihane, Ding Jie, Hauser Andreas, Avarvari Narcis
Laboratoire MOLTECH-Anjou UMR 6200, UFR Sciences, CNRS, Université d'Angers, Bât. K, 2 Bd. Lavoisier, 49045 Angers, France.
Org Biomol Chem. 2015 Jan 28;13(4):1040-7. doi: 10.1039/c4ob02100b. Epub 2014 Nov 20.
Bis(thiomethyl)- and bis(thiohexyl)-tetrathiafulvalene-bromo-benzothiadiazoles, containing electron donor tetrathiafulvalene (TTF) and electron acceptor benzothiadiazole (BTD) units, have been prepared by Stille coupling reactions between the TTF-SnMe3 precursors and BTD-Br2. In another series of experiments, TTF-acetylene-BTD compounds have been synthesized by Sonogashira coupling between either TTF-acetylenes and BTD-Br2 in low yields, or TTF-iodine and BTD-acetylene in moderate yields. In the compound TTF-C≡C-BTD the TTF and BTD units are coplanar in the solid state, as shown by the single crystal X-ray structure, and there is segregation in the packing between the donor and acceptor units. All the derivatives have good electron donor properties, as determined by cyclic voltammetry measurements, and they can also be reversibly reduced thanks to the presence of the BTD moiety. UV-visible spectroscopy and photophysical investigations show the presence of an intramolecular charge transfer (ICT) band and an emission band originating from the charge transfer. Both the absorption and the emission are modulated by the substitution scheme and the insertion of the acetylenic bridge.
含有电子给体四硫富瓦烯(TTF)和电子受体苯并噻二唑(BTD)单元的双(硫甲基)-和双(硫己基)-四硫富瓦烯-溴-苯并噻二唑,是通过TTF-SnMe3前体与BTD-Br2之间的Stille偶联反应制备的。在另一系列实验中,TTF-乙炔-BTD化合物是通过TTF-乙炔与BTD-Br2之间的Sonogashira偶联以低产率合成的,或者通过TTF-碘与BTD-乙炔之间的Sonogashira偶联以中等产率合成的。在化合物TTF-C≡C-BTD中,如单晶X射线结构所示,TTF和BTD单元在固态下是共面的,并且在给体和受体单元之间的堆积中存在分离。通过循环伏安法测量确定,所有衍生物都具有良好的电子给体性质,并且由于BTD部分的存在,它们也可以被可逆地还原。紫外可见光谱和光物理研究表明存在分子内电荷转移(ICT)带和源自电荷转移的发射带。吸收和发射都受到取代方案和炔桥插入的调节。