Sarova Ginka H, Hartnagel Uwe, Balbinot Domenico, Sali Sevda, Jux Norbert, Hirsch Andreas, Guldi Dirk M
Department of Chemistry and Pharmacy & Interdisciplinary Center for Molecular Materials, University of Erlangen-Nuremberg, Egerlandstrasse 3, 91058 Erlangen, Germany.
Chemistry. 2008;14(10):3137-45. doi: 10.1002/chem.200701462.
Mono- and bis-functionalized C(60) and C(70) fullerene derivatives (DF, 1-10) that carry one or two oligoanionic dendritic termini in their malonate addends and an oligocationic octapyridinium zinc porphyrin salt (ZnP) were found to self-assemble in buffered aqueous solution to yield a novel series of 1:1 and/or 1:2 electron transfer hybrid associates. Remarkably high association constants-typically on the order of 10(8) M(-1)-were derived that corroborate stable complex formations. A combination of electrostatic and charge-transfer interactions that are operative between the electron-accepting DF and the electron-donating ZnP is considered to contribute to the uniquely high complex stability. First insight into intracomplex excited state interactions came from steady-state and time-resolved fluorescence quenching experiments that were performed with the molecular ZnP/DF hybrid associates. Excited state quenching processes are, for example, evident in form of a bi-exponential fluorescence decay of ZnP-corresponding to a distribution of associated and non-associated ZnP. Unambiguous evidence for an intracomplex electron transfer quenching, namely, formation of ZnP(.+)/C(60) (.-) and ZnP(.+)/C(70) (.-) radical ion pairs, was gathered in time-resolved transient absorption measurements. Lifetimes of these radical ion-pairs range from nanoseconds to a few microseconds.
单官能化和双官能化的C(60)和C(70)富勒烯衍生物(DF,1 - 10)在其丙二酸加成物中带有一个或两个寡阴离子树枝状末端,以及一种寡阳离子八吡啶锌卟啉盐(ZnP),发现它们在缓冲水溶液中自组装,产生了一系列新型的1:1和/或1:2电子转移混合缔合体。得出了非常高的缔合常数——通常在10⁸ M⁻¹数量级——这证实了稳定络合物的形成。电子接受体DF和电子供体ZnP之间起作用的静电相互作用和电荷转移相互作用的组合被认为有助于这种独特的高络合物稳定性。对络合物内激发态相互作用的初步了解来自于对分子ZnP/DF混合缔合体进行的稳态和时间分辨荧光猝灭实验。例如,激发态猝灭过程以ZnP的双指数荧光衰减形式明显可见——这对应于缔合和未缔合ZnP的分布。在时间分辨瞬态吸收测量中收集到了络合物内电子转移猝灭的明确证据,即形成了ZnP(⁺)/C(60)(⁻)和ZnP(⁺)/C(70)(⁻)自由基离子对。这些自由基离子对的寿命从纳秒到几微秒不等。