Institut Charles Sadron, CNRS, UPR 22, 23 rue du Loess, 67034 Strasbourg, France.
Chemphyschem. 2013 Apr 2;14(5):958-69. doi: 10.1002/cphc.201200848. Epub 2013 Feb 10.
The electronic structure of polyanions of sterically encumbered triisopropylsilyl-substituted linear and cyclic oligo(phenyleneethynylene)s (Monomer, Trimer, Pentamer, and Triangle) is investigated by electron paramagnetic resonance (EPR), electron nuclear double resonance (ENDOR), and UV/Vis-near-infrared (NIR) spectroscopies, cyclic voltammetry, and theoretical calculations (DFT). Increasing anion orders are generated sequentially in vacuo at room temperature by chemical reaction with potassium metal up to the pentaanion. The relevance of these compounds acting as electron reservoirs is thus demonstrated. Even-order anions are EPR silent, whereas the odd species exhibit different signatures, which are identified after comparison of the measured hyperfine couplings by ENDOR spectroscopy with those predicted by DFT calculations. With increasing size of the oligomers the electron spin density is first distributed over the backbone carbon atoms for the monoanions, and then further localized at the outer phenyl rings for the trianion species. Examination of the UV/Vis-NIR spectra indicates that the monoanions (T(.-) , P(.-) ) exhibit two transitions in the Vis-NIR region, whereas a strong absorption in the IR region is solely observed for higher reduced states. Electronic transitions of the neutral monoanions and trianions are redshifted with increasing oligomer size, whereas for a given oligomer a blueshift is observed upon increasing the charge, which suggests a localization of the spin density.
受阻的三异丙基硅取代的线性和环状寡聚(苯乙炔)(单体、三聚体、五聚体和三角形)的聚阴离子的电子结构通过电子顺磁共振(EPR)、电子核双共振(ENDOR)和紫外/可见-近红外(NIR)光谱、循环伏安法和理论计算(DFT)进行了研究。通过与钾金属在室温下的化学反应,在真空中顺序生成不同阴离子阶数,直至五聚阴离子。因此,证明了这些化合物作为电子储库的相关性。偶数阶阴离子在 EPR 中是无声的,而奇数物种则表现出不同的特征,这些特征通过 ENDOR 光谱测量的超精细耦合与 DFT 计算预测的超精细耦合进行比较后得到识别。随着寡聚物尺寸的增加,电子自旋密度首先分布在单阴离子的主链碳原子上,然后进一步局域在外苯基环上的三阴离子物种上。对紫外/可见-近红外光谱的研究表明,单阴离子(T(-),P(-))在可见-近红外区域表现出两个跃迁,而对于较高的还原态,仅在红外区域观察到强吸收。中性单阴离子和三阴离子的电子跃迁随着寡聚物尺寸的增加而红移,而对于给定的寡聚物,随着电荷的增加观察到蓝移,这表明自旋密度的局域化。