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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, Photochemical, and Redox Properties of Gold(I) and Gold(III) Pincer Complexes Incorporating a 2,2 ':6 ',2 ''-Terpyridine Ligand Framework
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Synthesis, Photochemical, and Redox Properties of Gold(I) and Gold(III) Pincer Complexes Incorporating a 2,2 ':6 ',2 ''-Terpyridine Ligand Framework

机译:掺入2,2':6',2''-三联吡啶配体骨架的Gold(I)和Gold(III)钳式配合物的合成,光化学和氧化还原性质

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Reaction of [Au(C6F5) (tht)] (tht = tetrahydrothiophene) with 2,2':6',2"-terpyridine (terpy) leads to complex [Au(C6F5)(eta'-terpy)] (1). The chemical oxidation of complex (1) with 2 equiv of [N(C6H4Br-4)(3)](PF6) or using electrosynthetic techniques affords the Au(III) complex [Au(C6F5)(eta(3)-terpy)](PF6)(2) (2). The X-ray diffraction study of complex 2 reveals that the terpyridine acts as tridentate chelate ligand, which leads to a slightly distorted square-planar geometry. Complex 1 displays fluorescence in the solid state at 77 K due to a metal (gold) to ligand (terpy) charge transfer transition, whereas complex 2 displays fluorescence in acetonitrile due to excimer or exciplex formation. Time-dependent density functional theory calculations match the experimental absorption spectra of the synthesized complexes. In order to further probe the frontier orbitals of both complexes and study their redox behavior, each compound was separately characterized using cyclic voltammetry. The bulk electrolysis of a solution of complex 1 was analyzed by spectroscopic methods confirming the electrochemical synthesis of complex 2.
机译:[Au(C6F5)(tht)](tht =四氢噻吩)与2,2':6',2“-吡啶(叔丁基)的反应生成络合物[Au(C6F5)(eta'-terpy)](1) 。用2当量的[N(C6H4Br-4)(3)](PF6)或使用电合成技术对络合物(1)进行化学氧化,得到Au(III)络合物[Au(C6F5)(eta(3)-terpy )](PF6)(2)(2)。配合物2的X射线衍射研究表明,联吡啶用作三齿螯合配体,导致方形几何结构略有扭曲,配合物1在固态时显示荧光由于金属(金)到配体(叔)的电荷转移跃迁,在77 K时,复合物2由于受激准分子或激基复合物的形成而在乙腈中显示荧光,随时间变化的密度泛函理论计算与合成复合物的实验吸收光谱相匹配。为了进一步探测这两种配合物的前沿轨道并研究其氧化还原行为,使用循环伏安法分别对每种化合物进行了表征。配合物1溶液的本体电解通过光谱法进行分析,从而证实了配合物2的电化学合成。

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