Blanchard Philippe, Brisset Hugues, Illien Bertrand, Riou Amédée, Roncali Jean
Ingénierie Moléculaire et Matériaux Organiques, CNRS, UMR 6501, Université d'Angers, 2 Bd Lavoisier, F-49045 Angers Cedex, France.
J Org Chem. 1997 Apr 18;62(8):2401-2408. doi: 10.1021/jo9623447.
Bridged dithienylethylenes (DTEs) bearing solubilizing alkyl chains at various positions (2-5) have been synthesized by McMurry dimerization of cyclopenta[b]thiophen-6-ones. In order to introduce alkyl substituents at different positions of the DTE molecule, the precursor ketones have been prepared by different strategies based on a combination of Mannich or Wittig-Horner reaction and Friedel-Craft intramolecular cyclization. The position and the length of the alkyl substituents exert a strong effect on the ability of the precursor to undergo electrochemical polymerization. Thus, whereas substitution at the alpha-position of the ethylene linkage (3) results in a rapid inhibition of electropolymerization, introduction of alkyl chains at the beta-position (4, 5) greatly improves the efficiency of the polymerization process. The analysis of the electrochemical and optical properties of the polymers shows that rigidification of the DTE molecule leads to a significant decrease of the oxidation potential and bandgap. A comparative analysis of DTE and its bridged analogues by means of X-ray diffraction reveals, in agreement with experimental and theoretical results, that the observed reduction of both the HOMO-LUMO gap of the precursor and the bandgap of the corresponding polymers are related to a relaxation of bond length alternation in the DTE moiety.
通过环戊并[b]噻吩-6-酮的麦克默里二聚反应,合成了在不同位置(2-5)带有增溶烷基链的桥连二噻吩乙烯(DTE)。为了在DTE分子的不同位置引入烷基取代基,基于曼尼希反应或维蒂希-霍纳反应与傅克分子内环化反应的组合,通过不同策略制备了前体酮。烷基取代基的位置和长度对前体进行电化学聚合的能力有很大影响。因此,虽然在乙烯键的α位(3)进行取代会导致电聚合迅速受到抑制,但在β位(4,5)引入烷基链则大大提高了聚合过程的效率。对聚合物的电化学和光学性质分析表明,DTE分子的刚性化导致氧化电位和带隙显著降低。通过X射线衍射对DTE及其桥连类似物进行的对比分析表明,与实验和理论结果一致,前体的HOMO-LUMO能隙和相应聚合物的带隙的降低均与DTE部分中键长交替的松弛有关。