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基于五吡啶配体的钌水氧化催化剂。

Ruthenium Water Oxidation Catalysts based on Pentapyridyl Ligands.

机构信息

Institute of Chemical Research of Catalonia, ICIQ, Av. Països Catalans 16, 43007, Tarragona, Spain.

Departament de Química, Universitat Autònoma de Barcelona, Cerdanyola del Vallès, 08193, Barcelona, Spain.

出版信息

ChemSusChem. 2017 Nov 23;10(22):4517-4525. doi: 10.1002/cssc.201701747. Epub 2017 Nov 14.

Abstract

Ruthenium complexes containing the pentapyridyl ligand 6,6''-(methoxy(pyridin-2-yl)methylene)di-2,2'-bipyridine (L-OMe) of general formula trans-[Ru (X)(L-OMe-κ-N )] (X=Cl, n=1, trans-1 ; X=H O, n=2, trans-2 ) have been isolated and characterized in solution (by NMR and UV/Vis spectroscopy) and in the solid state by XRD. Both complexes undergo a series of substitution reactions at oxidation state Ru and Ru when dissolved in aqueous triflic acid-trifluoroethanol solutions as monitored by UV/Vis spectroscopy, and the corresponding rate constants were determined. In particular, aqueous solutions of the Ru -Cl complex trans-[Ru (Cl)(L-OMe-κ-N )] (trans-1 ) generates a family of Ru aquo complexes, namely trans-[Ru (H O)(L-OMe-κ-N )] (trans-2 ), [Ru (H O) (L-OMe-κ-N )] (trans-3 ), and [Ru (Cl)(H O)(L-OMe-κ-N )] (trans-4 ). Although complex trans-4 is a powerful water oxidation catalyst, complex trans-2 has only a moderate activity and trans-3 shows no activity. A parallel study with related complexes containing the methyl-substituted ligand 6,6''-(1-pyridin-2-yl)ethane-1,1-diyl)di-2,2'-bipyridine (L-Me) was carried out. The behavior of all of these catalysts has been rationalized based on substitution kinetics, oxygen evolution kinetics, electrochemical properties, and density functional theory calculations. The best catalyst, trans-4 , reaches turnover frequencies of 0.71 s using Ce as a sacrificial oxidant, with oxidative efficiencies above 95 %.

摘要

含有五吡啶配体 6,6''-(甲氧基(吡啶-2-基)亚甲基)二-2,2'-联吡啶(L-OME)的钌配合物的通用公式为反式-[Ru(X)(L-OME-κ-N)](X=Cl,n=1,反式-1;X=H O,n=2,反式-2)已在溶液中通过 NMR 和 UV/Vis 光谱以及 XRD 在固态下分离和表征。当溶解在水合三氟乙酸-三氟乙醇溶液中时,这两种配合物在氧化态 Ru 和 Ru 上都经历了一系列取代反应,通过 UV/Vis 光谱监测,并确定了相应的速率常数。特别是,Ru-Cl 配合物反式-[Ru(Cl)(L-OME-κ-N)](反式-1)的水溶液产生了一系列 Ru 水合配合物,即反式-[Ru(H O)(L-OME-κ-N)](反式-2),[Ru(H O)(L-OME-κ-N)](反式-3)和[Ru(Cl)(H O)(L-OME-κ-N)](反式-4)。尽管配合物反式-4 是一种有效的水氧化催化剂,但配合物反式-2 的活性适中,而反式-3 则没有活性。对含有甲基取代配体 6,6''-(1-吡啶-2-基)乙烷-1,1-二基)二-2,2'-联吡啶(L-Me)的相关配合物进行了平行研究。基于取代动力学、氧析出动力学、电化学性质和密度泛函理论计算,对所有这些催化剂的行为进行了合理化。最好的催化剂反式-4,使用 Ce 作为牺牲氧化剂,达到 0.71 s 的转化率频率,氧化效率超过 95%。

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