Departamento de Química Física, Universidad de Málaga, Campus de Teatinos s/n, Málaga 29071, Spain.
Chemistry. 2010 Jan 11;16(2):470-84. doi: 10.1002/chem.200902037.
A family of quinoidal oligothiophenes, from the dimer to the hexamer, with fused bis(butoxymethyl)cyclopentane groups has been extensively investigated by means of electronic and vibrational spectroscopy, electrochemical measurements, and density functional calculations. The latter predict that the electronic ground state always corresponds to a singlet state and that, for the longest oligomers, this state has biradical character that increases with increasing oligomer length. The shortest oligomers display closed-shell quinoidal structures. Calculations also predict the existence of very low energy excited triplet states that can be populated at room temperature. Aromatization of the conjugated carbon backbone is the driving force that determines the increasing biradical character of the ground state and the appearance of low-lying triplet states. UV/Vis, Raman, IR, and electrochemical experiments support the aromatic biradical structures predicted for the ground state of the longest oligomers and reveal that population of the low-lying triplet state accounts for the magnetic activity displayed by these compounds.
一个带有稠合双(正丁氧基甲基)环戊烷基团的类醌式齐聚噻吩家族,从二聚体到六聚体,已经通过电子和振动光谱、电化学测量和密度泛函计算得到了广泛的研究。后者预测,电子基态总是对应于单重态,并且对于最长的齐聚物,该状态具有随着齐聚物长度的增加而增加的双自由基特征。最短的齐聚物显示出闭合壳层的类醌结构。计算还预测存在非常低能量的激发三重态,这些三重态可以在室温下被占据。共轭碳骨架的芳构化是决定基态双自由基特征增加和出现低能三重态的驱动力。UV/Vis、拉曼、IR 和电化学实验支持预测的最长齐聚物基态的芳香双自由基结构,并揭示了低能三重态的占据解释了这些化合物所表现出的磁活性。