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Tuning photophysical properties with ancillary ligands in Ru(II) mono-diimine complexes

机译:Ru(II)单二亚胺配合物中的辅助配体调节光物理性质

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摘要

The series of complexes [XRu(CO)(L–L)(L′)2][PF6] (X = H, TFA, Cl; L–L = 2,2′-bipyridyl, 1,10-phenanthroline, 5-amino-1,10-phenanthroline and 4,4′-dicarboxylic-2,2′-bipyridyl; L′2 = 2PPh3, Ph2 PC2H4PPh2, Ph2PCH═CHPPh2) have been synthesized from the starting complex K[Ru(CO)3(TFA)3] (TFA = CF3CO2) by first reacting with the phosphine ligand, followed by reaction with the L–L and anion exchange with NaPF6. In the case of L–L = phenanthroline and L′2 = 2PPh3, the neutral complex Ru(Ph3P)(CO)(1,10-phenanthroline)( TFA)2 is also obtained and its solid state structure is reported. Solid state structures are also reported for the cationic complexes where L–L = phenanthroline, L2 = 2PPh3 and X = Cl and for L–L = 2,2′-bipyridyl, L2 = 2PPh3 and X = H. All the complexes were characterized in solution by a combination of 1H and 31P NMR, IR, mass spectrometry and elemental analyses. The purpose of the project was to synthesize a series of complexes that exhibit a range of excited-state lifetimes and that have large Stokes shifts, high quantum yields and high intrinsic polarizations associated with their metal-to-ligand charge-transfer (MLCT) emissions. To a large degree these goals have been realized in that excited-state lifetimes in the range of 100 ns to over 1 μs are observed. The lifetimes are sensitive to both solvent and the presence of oxygen. The measured quantum yields and intrinsic anisotropies are higher than for previously reported Ru(II) complexes. Interestingly, the neutral complex with one phosphine ligand shows no MLCT emission. Under the conditions of synthesis some of the initially formed complexes with X = TFA are converted to the corresponding hydrides or in the presence of chlorinated solvents to the corresponding chlorides, testifying to the lability of the TFA Ligand. The compounds show multiple reduction potentials which are chemically and electrochemically reversible in a few cases as examined by cyclic voltammetry. The relationships between the observed photophysical properties of the complexes and the nature of the ligands on the Ru(II) is discussed.
机译:一系列配合物[XRu(CO)(L–L)(L')2] [PF6](X = H,TFA,Cl; L–L = 2,2'-联吡啶,1,10-菲咯啉,5 -氨基-1,10-菲咯啉和4,4'-二羧酸-2,2'-联吡啶基; L'2 = 2PPh3,Ph2 PC2H4PPh2,Ph2PCH = CHPPh2)已从起始配合物K [Ru(CO)3 (TFA)3](TFA = CF3CO2),首先与膦配体反应,然后与L–L反应并与NaPF6进行阴离子交换。在L–L =菲咯啉和L'2 = 2PPh 3 的情况下,中性络合物Ru(Ph 3 P)(CO)(1,10-菲咯啉) (TFA) 2 也得到了报道,并报道了其固态结构。还报道了阳离子配合物的固态结构,其中L–L =菲咯啉,L 2 = 2PPh 3 和X = Cl,L–L = 2,2' -bipyridyl,L 2 = 2PPh 3 和X =H。所有配合物的特征在于溶液中 1 H和 31 NMR,IR,质谱和元素分析。该项目的目的是合成一系列配合物,这些配合物表现出一系列的激发态寿命,并且具有大的斯托克斯位移,高量子产率和与金属到配体电荷转移(MLCT)发射相关的高本征极化。在很大程度上实现了这些目标,因为观察到的激发态寿命在100 ns到超过1μs的范围内。寿命对溶剂和氧气的存在均敏感。测得的量子产率和固有各向异性高于先前报道的Ru(II)配合物。有趣的是,具有一个膦配体的中性配合物未显示MLCT发射。在合成条件下,一些最初形成的X = TFA的配合物被转化为相应的氢化物,或在氯化溶剂的存在下转化为相应的氯化物,证明了TFA配体的不稳定性。该化合物显示出多种还原电位,在某些情况下,如循环伏安法所检测,该还原电位在化学和电化学上是可逆的。讨论了所观察到的配合物的光物理性质与Ru(II)上配体性质之间的关系。

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