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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, spectroscopy, and electrochemical studies of binuclear tris-bipyridine ruthenium(II) complexes with oligothiophene bridges
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Synthesis, spectroscopy, and electrochemical studies of binuclear tris-bipyridine ruthenium(II) complexes with oligothiophene bridges

机译:带有低聚噻吩桥的双核三联吡啶钌(II)配合物的合成,光谱学和电化学研究

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A new series of bipyridine-capped oligothiophene ligands and their binuclear Ru(II) complexes of the general formula [(bpy)(2)Ru-bpy(th)(x)bpy-Ru(bpy)(2)](4+) (where bpy = 2,2'-bipyridyl, th = 2,5-thienyl, and x = 1, 3, or 6) has been synthesized. Comparison of the bipyridine-capped oligothiophenes to the corresponding uncapped oligomers shows that there is coupling of the bipyridine to the oligothiophene-conjugated pi -system. Each of the bipyridine-capped ligands reduces at a bipyridine cap at potentials less negative than those of free bipyridine. The lambda (max) values of the lowest pi-pi* transition increase and the E-pa values for the first oxidation decrease with an increase in the number of thiophene rings in the bridge. The increase in the number of thiophene rings also leads to more accessible oxidation states, up to four for the x = 6 compound. Upon complexation of the ligands with the (bpy)(2)Ru2+ moiety the electronic spectra of the complexes show a significant redshift in comparison to the spectra of Ru(bpy)(3)(2+), the oligothiophene-based oxidation(s) shifts to more positive potentials, and new oxidation and reduction processes are also observed. A single concurrent Ru(II/III) oxidation process is observed in all cases at about the same potential (E-ave(0) = 1.32 V (acetonitrile solution)) as is observed in the parent complex Ru(bpy)(3)(2+), suggesting that the couples are not strongly coupled. The series of complexes shows a unique range of ligand-based oxidation processes with respect to the position of the Ru(II/III) redox process. In the case of x = 1, no ligand-based oxidation process is observed; for x = 3, the first oligothiophene oxidation occurs at potentials less positive than those of the Ru(II/III) redox process, and for x = 6, two oligothiophene oxidations are less positive than the Ru(II/III) redox process. A series of bpy reduction processes that are similar to those observed for Ru(bpy)(3)(2+) also occurs. The x = 1 compound shows two, one-electron reductions and then two, two-electron reductions; the x = 3 and x = 6 compounds show three, two-electron reduction processes. The first reductions occur at the capping bipyridines of the bridging ligand in all three complexes, and subsequent reductions occur at the ancillary bipyridine ligands in a stepwise fashion. [References: 58]
机译:一系列新的联吡啶封端的寡噻吩配体及其通式为[(bpy)(2)Ru-bpy(th)(x)bpy-Ru(bpy)(2)]的双核Ru(II)配合物(4+ )(其中bpy = 2,2'-联吡啶基,th = 2,5-噻吩基,x = 1、3或6)。将联吡啶封端的寡聚噻吩与相应的未封端低聚物进行比较,表明联吡啶与寡聚噻吩共轭的pi系统偶联。每个联吡啶封端的配体在联吡啶帽处以比游离联吡啶的负电势更低的电势还原。随着桥中噻吩环数量的增加,最低pi-pi *跃迁的λ(最大值)值增加,而第一次氧化的E-pa值减小。噻吩环数目的增加还导致更易达到的氧化态,对于x = 6的化合物,最多可达四个。配体与(bpy)(2)Ru2 +部分络合后,与Ru(bpy)(3)(2+)的光谱(基于低聚噻吩的氧化)相比,络合物的电子光谱显示出明显的红移)转移到更正的电势,并且还观察到新的氧化和还原过程。在所有情况下,与母体Ru(bpy)(3)所观察到的电位相同(E-ave(0)= 1.32 V(乙腈溶液)),在相同的电位下观察到一个同时发生的Ru(II / III)氧化过程。 (2+),表明这对夫妻之间没有强耦合。该系列配合物相对于Ru(II / III)氧化还原过程的位置显示出基于配体的氧化过程的独特范围。在x = 1的情况下,未观察到基于配体的氧化过程。对于x = 3,第一次低聚噻吩氧化发生在比Ru(II / III)氧化还原过程的电位低的正电势下;对于x = 6,两次低聚噻吩氧化发生在比Ru(II / III)氧化还原过程低的正电势下。还发生了一系列类似于Ru(bpy)(3)(2+)的bpy还原过程。 x = 1的化合物显示两个单电子还原,然后两个两个电子还原; x = 3和x = 6的化合物显示出三个电子还原过程。最初的还原发生在所有三个复合物中的桥接配体的封端联吡啶上,随后的还原以逐步的方式发生在辅助联吡啶配体上。 [参考:58]

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