Abbott Geoffrey, Brooks Robert, Rosenberg Edward, Terwilliger Michelle, Ross J B Alexander, Ichire Ogar O L
Department of Chemistry & Biochemistry, University of Montana , Missoula, Montana 59812, United States.
Organometallics. 2014 May 27;33(10):2467-2478. doi: 10.1021/om401153x. Epub 2014 May 8.
Ruthenium complexes of the general formula [Ru(CO)(H)(L)(L')][PF] (L = 2PPh, L' = η-4,4'-dicarboxybipyridine (); L =-2PhPCHCHCOOH, L' = bipyridine (); L = PhPCHCHPPh, L' = η-5-amino-1,10-phenanthroline (); L = 2PPh, L' = η-4-carboxaldehyde-4'-methylbipyridine ()) have been shown to have longer emission lifetimes and higher quantum yields in solution compared with more symmetrical molecules such as [Ru(bpy)][Cl]. Compound is obtained as a mixture with the corresponding acetal, . These less symmetrical complexes have been covalently immobilized on the surface of silica polyamine composites, and their photophysical properties have been studied. The surface-bound complexes have been characterized by solid-state CPMAS C, P, and Si NMR, UV-vis, and FT-IR spectroscopies. Excited-state lifetime studies revealed that, in general, the lifetimes of the immobilized complexes are 1.4 to 8 times longer than in solution and are dependent on particle size (300-500 μm versus 10-20 nm average diameter silica gels), polymer structure (linear poly(allylamine) versus branched poly(ethylenimine)), and the type of surface tether. One exception to this trend is the previously reported complex [Ru(bpy)(5-amino-1,10-phenanthroline)][PF] (), where only a slight increase in lifetime is observed. Only minor changes in emission wavelength are observed for all the complexes. This opens up the possibility for enhanced heterogeneous electron transfer in photocatalytic reactions.
通式为[Ru(CO)(H)(L)(L')][PF]的钌配合物(L = 2PPh,L' = η-4,4'-二羧基联吡啶();L = -2PhPCHCHCOOH,L' = 联吡啶();L = PhPCHCHPPh,L' = η-5-氨基-1,10-菲咯啉();L = 2PPh,L' = η-4-甲醛-4'-甲基联吡啶())已被证明与[Ru(bpy)][Cl]等更对称的分子相比,在溶液中具有更长的发射寿命和更高的量子产率。化合物是与相应的缩醛混合得到的。这些不太对称的配合物已被共价固定在二氧化硅多胺复合材料的表面,并对其光物理性质进行了研究。表面结合的配合物已通过固态CPMAS C、P和Si NMR、紫外可见光谱和傅里叶变换红外光谱进行了表征。激发态寿命研究表明,一般来说,固定化配合物的寿命比在溶液中长1.4至8倍,并且取决于颗粒大小(平均直径为300 - 500μm的硅胶与10 - 20nm的硅胶)、聚合物结构(线性聚(烯丙胺)与支化聚(乙二胺))以及表面连接链的类型。这种趋势的一个例外是先前报道的配合物[Ru(bpy)(5-氨基-1,10-菲咯啉)][PF](),在其中仅观察到寿命略有增加。对于所有配合物,发射波长仅观察到微小变化。这为光催化反应中增强的异质电子转移开辟了可能性。