Ghosh Sushobhan, Chakrabarty Rajesh, Mukherjee Partha Sarathi
Department of Inorganic and Physical Chemistry, Indian Institute of Science, Bangalore 560 012, India.
Inorg Chem. 2009 Jan 19;48(2):549-56. doi: 10.1021/ic801381p.
A Pt(II)(2) organometallic "clip" (1a) containing ethynyl functionality is synthesized. Multinuclear NMR and electrospray ionization mass spectrometry characterized this "clip", and the molecular structure was determined in an X-ray single-crystal diffraction study. A series of discrete molecular rectangles (2a-d) have been synthesized from this "clip" in combination with dipyridyl-based linear linkers (L(1-4)) by a metal-ligand coordination driven self-assembly approach [where L(1) = 4,4'-bipyridine, L(2) = trans-1,2-bis(4-pyridyl)ethylene, L(3) = N-(4-pyridyl)isonicotinamide, and L(4) = N,N'-bis(4-pyridylidene)ethylenediamine]. Rectangle 2d was designed using the imine-based ligand L(4) to make it a system composed of a fluorophore-receptor-fluorophore combination. The imine N(4) pocket is the receptor site, while the anthracene-based "clip" is the fluorophore. Complex 2d is fluorescent in nature and showed fluorescence quenching in solution upon the binding of hard transition metal ions (Fe(3+), Cu(2+), Ni(2+), and Mn(2+)) into the N(4) pocket. The nonresponsive nature of the fluorescence intensity upon the addition of soft metal ions (Zn(2+) and Cd(2+)) having d(10) configuration makes it a suitable sensor for transition metal ions. The fluorescence intensity of the Ni(2+) bound complex was regained when the metal was removed by a stronger chelating 2,2'-dipyridyl ligand.
合成了一种含有乙炔基官能团的二价铂有机金属“夹子”(1a)。通过多核核磁共振和电喷雾电离质谱对该“夹子”进行了表征,并通过X射线单晶衍射研究确定了其分子结构。通过金属-配体配位驱动的自组装方法,由这种“夹子”与基于联吡啶的线性连接体(L(1-4))组合,合成了一系列离散的分子矩形(2a-d)[其中L(1)=4,4'-联吡啶,L(2)=反式-1,2-双(4-吡啶基)乙烯,L(3)=N-(4-吡啶基)异烟酰胺,L(4)=N,N'-双(4-吡啶基亚甲基)乙二胺]。矩形2d使用基于亚胺的配体L(4)进行设计,使其成为一个由荧光团-受体-荧光团组合而成的体系。亚胺N(4)口袋是受体位点,而基于蒽的“夹子”是荧光团。配合物2d本质上具有荧光性,并且在溶液中,当硬过渡金属离子(Fe(3+)、Cu(2+)、Ni(2+)和Mn(2+))结合到N(4)口袋中时会发生荧光猝灭。添加具有d(10)构型的软金属离子(Zn(2+)和Cd(2+))时荧光强度无响应,这使其成为一种适用于过渡金属离子的传感器。当通过更强的螯合配体2,2'-联吡啶去除金属时,镍(2+)结合的配合物的荧光强度得以恢复。