Key Laboratory of Theoretical and Computational Photochemistry of Ministry of Education, Department of Chemistry, Beijing Normal University , Xin-wai-da-jie No. 19, Beijing 100875, People's Republic of China.
Anal Chem. 2014 Jan 7;86(1):891-9. doi: 10.1021/ac4034592. Epub 2013 Dec 23.
An ab initio multiconfigurational (CASPT2//CASSCF) approach has been employed to map radiative and nonradiative relaxation pathways for a cyclam-methylbenzimidazole fluorescent sensor and its metal ion (Zn(2+), Cd(2+), and Cu(2+)) complexes to provide an universal understanding of ON-OFF fluorescent mechanisms for the selective identification of these metal ions. The photoinduced electron transfer (PET) between the receptor and the signaling unit is quantitatively attributed for the first time to a newly generated transition of S0→SCT((1)nπ*), which is a typical (1)nπ* excitation but exhibits a significant charge transfer character and zwitterionic radical configuration. The present study contributes the two theoretical models of the competitive coexistence of radiative/nonradiative decay channel in (1)ππ*/SCT((1)nπ*) states for the detection of metal ions with d(10) configuration (i.e., Zn(2+), Cd(2+), etc.) and a downhill ladder relaxation pathway through multi nona-diabatic relays for the probing of d(9) cations (Cu(2+), etc.). These computational results will establish a benchmark for ON-OFF mechanisms of a fluorescent sensor that coordinates various transition metal ions with different electron configuration and radius.
我们采用从头算多组态(CASPT2//CASSCF)方法,对环脒-苯并咪唑荧光传感器及其金属离子(Zn(2+)、Cd(2+)和 Cu(2+))络合物的辐射和非辐射弛豫途径进行了映射,从而为这些金属离子的选择性识别提供了对 ON-OFF 荧光机制的普遍理解。受体和信号单元之间的光诱导电子转移(PET)首次定量归因于 S0→SCT((1)nπ*)新生成的跃迁,这是一种典型的(1)nπ激发,但表现出显著的电荷转移特征和两性离子自由基构型。本研究为具有 d(10)构型(即 Zn(2+)、Cd(2+)等)的金属离子检测和通过多个非绝热接力的 d(9)阳离子(Cu(2+)等)探测的(1)ππ/SCT((1)nπ*)态中辐射/非辐射衰减通道的竞争共存的两个理论模型做出了贡献。这些计算结果将为协调具有不同电子构型和半径的各种过渡金属离子的荧光传感器的 ON-OFF 机制建立基准。