Theoretical and Physical Chemistry Institute, National Hellenic Research Foundation, 48 Vassileos Constantinou Avenue, 11635 Athens, Greece.
Chemistry. 2010 Oct 18;16(39):11969-76. doi: 10.1002/chem.201001665.
A coumarin derivative with a malonate unit has been synthesized and used for the preparation of a fullerene-coumarin dyad through the Bingel cyclopropanation method. The newly synthesized dyad is soluble in organic solvents and has been fully characterized with traditional spectroscopic techniques. Electronic interactions between the two components of the dyad were probed with the aid of UV/Vis spectroscopy, fluorescence emission, and electrochemistry measurements. Our studies clearly show the presence of electronic interactions between C(60) and modified coumarin in the ground state; efficient electron-transfer quenching of the singlet excited state of the coumarin moiety by the appended fullerene sphere was also observed. Time-resolved fluorescence measurements revealed lifetimes for the coumarin-C(60) dyad at a maximum of 50 ps, while the quantum yield was reaching unity. Additionally, the redox potentials of the C(60)-coumarin dyad were determined and the energetics of the electron-transfer processes were evaluated. Finally, after alkaline treatment of C(60)-coumarin, which resulted in the deprotection of carboxylate units, the dyad was tested as a metal receptor for divalent metal cations; ion competition studies and fluorescence experiments showed binding selectivity for lead ions.
已合成了具有丙二酸单元的香豆素衍生物,并通过 Bingel 环丙烷化方法将其用于制备富勒烯-香豆素偶联物。新合成的偶联物可溶于有机溶剂,并通过传统光谱技术进行了充分的表征。借助紫外/可见光谱、荧光发射和电化学测量研究了偶联物中两个组件之间的电子相互作用。我们的研究清楚地表明,在基态下 C(60)和修饰香豆素之间存在电子相互作用;还观察到附加的富勒烯球对香豆素部分的单重激发态的有效电子转移猝灭。时间分辨荧光测量显示香豆素-C(60)偶联物的寿命最长为 50 ps,而量子产率达到 1。此外,还确定了 C(60)-香豆素偶联物的氧化还原电位,并评估了电子转移过程的能量。最后,对 C(60)-香豆素进行碱性处理,去除羧酸盐单元后,将偶联物作为二价金属阳离子的金属受体进行了测试;离子竞争研究和荧光实验显示对铅离子具有结合选择性。