首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Synthesis and spectroelectrochemical studies of mixed heteroleptic chelate complexes of ruthenium(II) with 1,8-bis(2-pyridyl)-3,6-dithiaoctane (pdto) and substituted 1,10-phenanthrolines
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Synthesis and spectroelectrochemical studies of mixed heteroleptic chelate complexes of ruthenium(II) with 1,8-bis(2-pyridyl)-3,6-dithiaoctane (pdto) and substituted 1,10-phenanthrolines

机译:钌(II)与1,8-双(2-吡啶基)-3,6-二硫辛烷(PDTO)和取代的1,10-菲咯啉的杂多螯合螯合物的合成及光谱电化学研究

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摘要

Reaction of dichlorotris(triphenylphosphine) ruthenium(II) [RuCl2(PPh3)(3)] with 1,8-bis(2-pyridyl)-3,6-dithiaoctane (pdto), a (N2S2) tetradentate donor, yields a new compound [Ru(pdto)(PPh3)Cl]Cl (1), which has been fully characterized. H-1 and P-31 NMR studies of 1 in acetonitrile at several temperatures show the substitution of both coordinated chloride and triphenylphosphine with two molecules of acetonitrile, as confirmed by the isolation of the complex [Ru(pdto)(CH3CN)(2)]Cl-2 (2). Cyclic voltammetric and spectroelectrochernical techniques allowed us to determine the electrochemical behavior of compound 1. The substitution of the chloride and triphenylphosphine by acetonitrile molecules in the Ru(II) coordination sphere of compound 1 was also established by electrochemical studies. The easy substitution of this complex led us to use it as starting material to synthesize the substituted phenanthroline coordination compounds with (pdto) and ruthenium(II), [Ru(pdto)(4,7-diphenyl-1,10-phenanthroline)]Cl-2.4H(2)O (3), [Ru(pdto)(1,10-phenanthroline)]Cl-2.5H(2)O (4), [Ru(pdto)(5,6-dimethyl-1,10-phenanthroline)]Cl-2.5H(2)O (5), [Ru(pdto)(4,7-dimethyl-1,10-phenanthroline)]Cl-2.3H(2)O (6), and [Ru(pdto)(3,4,7,8-tetramethyl-1,10-phenanthroline)]Cl-2.4H(2)O (7). These compounds were fully characterized, and the crystal structure of 4 was obtained. Cyclic voltammetric and spectroelectrochemical techniques allowed us to determine their electrochemical behavior. The electrochemical oxidation processes in these compounds are related to the oxidation of ionic chlorides, and to the reversible transformation from Ru(II) to Ru(Ill). On the other hand, a single reduction process is associated to the reduction of the substituted phenanthroline in the coordination compound. The E-1/2 (phen/phen(-)) and E-1/2 (Ru-II/Ru-III) for the compounds (3-7) were evaluated, and, as expected, the modification of the substituted 1,10-phenanthrolines in the complexes also modifies the redox potentials. Correlations of both electrochemical potentials with pK(a) of the free 1,10-phenathrolines, lambda(max) MLCT transition band, and chemical shifts of phenanthrolines in these complexes were found, possibly as a consequence of the change in the electron density of the Ru(II) and the coordinated phenanthroline. [References: 44]
机译:二氯三(三苯基膦)钌(II)[RuCl2(PPh3)(3)]与1,8-双(2-吡啶基)-3,6-二硫辛烷(pdto)(四齿(N2S2)四齿)的反应产生了新的化合物[Ru(pdto)(PPh3)Cl] Cl(1),已被充分表征。 H-1和P-31 NMR在几个温度下在乙腈中进行的NMR研究表明,配位化合物[Ru(pdto)(CH3CN)(2)的分离证实了配位氯和三苯基膦被两个乙腈分子取代] Cl-2(2)。循环伏安法和光谱电子技术使我们能够确定化合物1的电化学行为。通过电化学研究,还确定了化合物1的Ru(II)配位域中乙腈分子对氯化物和三苯膦的取代。这种配合物的简单取代使我们将其用作起始原料,以合成具有(pdto)和钌(II),[Ru(pdto)(4,7-diphenyl-1,10-phenanthroline)]的邻菲咯啉配位化合物。 Cl-2.4H(2)O(3),[Ru(pdto)(1,10-菲咯啉)] Cl-2.5H(2)O(4),[Ru(pdto)(5,6-二甲基-1) ,10-菲咯啉)] Cl-2.5H(2)O(5),[Ru(pdto)(4,7-二甲基-1,10-菲咯啉)] Cl-2.3H(2)O(6)和[Ru(pdto)(3,4,7,8-四甲基-1,10-菲咯啉)] Cl-2.4H(2)O(7)。将这些化合物充分表征,得到4的晶体结构。循环伏安法和光谱电化学技术使我们能够确定其电化学行为。这些化合物中的电化学氧化过程与离子氯化物的氧化有关,与从Ru(II)到Ru(III)的可逆转化有关。另一方面,单一还原过程与配位化合物中取代的菲咯啉的还原有关。评估了化合物(3-7)的E-1 / 2(phen / phen(-))和E-1 / 2(Ru-II / Ru-III),并按预期对取代基进行了修饰配合物中的1,10-菲咯啉还可以修饰氧化还原电位。发现这些复合物中两种电化学势均与pK(a)的游离1,10-菲咯啉,lambda(max)MLCT跃迁带以及菲咯啉的化学位移相关。 Ru(II)和配位菲咯啉。 [参考:44]

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