Sellin Malte, Seiler Matthis, Mayländer Maximilian, Kloiber Konstantin, Radke Valentin, Weber Stefan, Richert Sabine, Krossing Ingo
Institut für Anorganische und Analytische Chemie, Albert-Ludwigs-Universität Freiburg, Albertstr. 21, 79104, Freiburg, Germany.
Institut für Physikalische Chemie, Albert-Ludwigs-Universität Freiburg, Albertstr. 21, 79104, Freiburg, Germany.
Chemistry. 2023 Jul 26;29(42):e202300909. doi: 10.1002/chem.202300909. Epub 2023 Jun 21.
The unsubstituted acenium radical cations (ARCs) are extremely sensitive and were hitherto only studied in situ, i. e. in the gas phase, as dilute solutions in strong acids or by matrix isolation spectroscopy at about 10 K. In this study, room temperature stable ARC salts with the weakly coordinating anion [F{Al(OR ) } ] (OR =-OC(CF ) ) supported by the weakly coordinating solvent 1,2,3,4-tetrafluorobenzene (TFB) were prepared and structurally, electrochemically and spectroscopically characterized. Reaction of the neutral acenes with Ag [F{Al(OR ) } ] led, non-innocent, to intermediate [Ag (acene) ] complexes, which decompose over time to Ag and the corresponding (impure) ARC salts. By contrast, direct deelectronation with the recently developed innocent deelectronator radical cation salt [anthracene ] [F{Al(OR ) } ] led to phase-pure products [acene] [F{Al(OR ) } ] (anthracene =9,10-dichlorooctafluoroanthracene; acene=anthra-, tetra-, pentacene). For the first time, a homogenous set of spectroscopic data on analytically pure ARC salts was obtained. In addition, cyclovoltammetric measurements of the acenes connected the potentials in solution with those in the gas-phase. Hence, the data complement the existing isolated gas-phase, strong acid or matrix isolation studies. A first entry to follow-up chemistry of the acenium radical cations as ligand forming oxidizers was demonstrated by reaction with Co (CO) giving [Co(anthracene)(CO) ] .
未取代的鎓自由基阳离子(ARCs)极其敏感,迄今为止仅在原位进行研究,即在气相中、作为强酸中的稀溶液或通过约10K的基质隔离光谱法进行研究。在本研究中,制备了由弱配位溶剂1,2,3,4-四氟苯(TFB)支撑的带有弱配位阴离子[F{Al(OR ) } ] (OR = -OC(CF ) )的室温稳定ARC盐,并对其进行了结构、电化学和光谱表征。中性并苯与Ag [F{Al(OR ) } ] 的反应非单纯地生成中间体[Ag (并苯) ] 配合物,该配合物会随时间分解为Ag和相应的(不纯的)ARC盐。相比之下,用最近开发的单纯去电子剂自由基阳离子盐[蒽 ] [F{Al(OR ) } ] 直接去电子则得到了相纯的产物[并苯] [F{Al(OR ) } ] (蒽 = 9,10-二氯八氟蒽;并苯 = 蒽、四并苯、五并苯)。首次获得了关于分析纯ARC盐的一组均匀的光谱数据。此外,并苯的循环伏安测量将溶液中的电位与气相中的电位联系起来。因此,这些数据补充了现有的孤立气相、强酸或基质隔离研究。通过与Co (CO) 反应生成[Co(蒽)(CO) ] ,展示了作为配体形成氧化剂的鎓自由基阳离子后续化学的首个切入点。