Santos Willy G, Budkina Darya S, Santagneli Silvia H, Tarnovsky Alexander N, Zukerman-Schpector Julio, Ribeiro Sidney J L
Institute of Chemistry , São Paulo State University - UNESP , CP 355, Araraquara , SP 14801-970 , Brazil.
Department of Chemistry , Federal University of São Carlos , UFSCar, CP 676, São Carlos , SP 13565-905 , Brazil.
J Phys Chem A. 2019 Aug 29;123(34):7374-7383. doi: 10.1021/acs.jpca.9b03581. Epub 2019 Aug 20.
Ultrafast transient absorption spectroscopy, NOESY-NMR, and EPR spectroscopy shed light on how π-π stacking interactions combined with electrostatic interactions can be used to form stable ion-pair complexes between pyrylium and tetraarylborate ions in which the interaction of the π-delocalized clouds promotes the observation of new radiative processes and also electron transfer processes excitation using visible light. The results exhibit a striking combination of properties, chemical stability and photophysical and photochemical events, that make these ion-pair complexes as a step toward the realization of chromophore/luminescent materials and also their use as a new monophotoinitiator system in radical polymerization reactions.
超快瞬态吸收光谱、NOESY-NMR和EPR光谱揭示了π-π堆积相互作用与静电相互作用相结合如何用于在吡喃鎓离子和四芳基硼酸根离子之间形成稳定的离子对配合物,其中π离域云的相互作用促进了新的辐射过程的观测以及利用可见光进行的电子转移过程激发。结果展示了一系列显著的性质组合,包括化学稳定性以及光物理和光化学事件,这使得这些离子对配合物成为迈向实现发色团/发光材料的一步,并且还可将其用作自由基聚合反应中的新型单光引发剂体系。