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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 and characterization of tris(bipyridyl)ruthenium(II)-modified mono-, di-, and trinuclear manganese complexes as electron-transfer models for photosystem II
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Synthesis and characterization of tris(bipyridyl)ruthenium(II)-modified mono-, di-, and trinuclear manganese complexes as electron-transfer models for photosystem II

机译:三(联吡啶)钌(II)修饰的单核,二核和三核锰配合物的合成和表征,作为光系统II的电子转移模型

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With the aim of modeling the arrangement of redox-active and photoactive components along the electron-transfer pathway of photosystem II, tetra- to nonanuclear transition metal complexes have been synthesized, comprising one, two, or three manganese ions, oxidizable phenolates, and tris(2,2'-bipyridyl)ruthenium(II)-type units as photosensitizers. These model complexes are considered to be mononuclear ([(LMn)-Mn-n](PF6)(m)), dinuclear ([(LMn2IV)-Mn-1a-(mu-O)(2)](PF6)(6)). or trinuclear ([(LMnMnMnLn)-Mn-n-Mn-II-Mn-II-L-II](PF6)(12)) With respect to the number of manganese centers present. Electronic coupling between the manganese ions is strongly antiferromagnetic in the case of the di(mu-oxo)-dimanganese compound [(LMn2IV)-Mn-1a(mu-O)(2)](PF6)(6), where the "ligand" [H2L1a](4+) consists Of two tris(bipyridyl)ruthenium(II)-type units covalentely bound to a bismacrocyclic Me(2)dtne backbone to which the manganese ions are coordinated via an additional phenolate oxygen (Me(2)dtne = 1,2-bis(4-methyl-1,4,7-triazacyclononyl)ethane). Weak antiferromagnetic coupling is observed in compounds [(LMnMnMnLn)-Mn-n-Mn-II-Mn-II-L-II](PF6)(12), where the three metals ale in a linear arrangement (face-sharing octahedral). They are bridged by three phenolate oxygens of each of the deprotonated "ligands" [H3Ln](6+), respectively. Each ligand [H3Ln](6+) (n = 1, 2) consists Of a tacn ring with three pendent arm phenols which are each bound to a tris(bipyridyl)ruthenium(II)-type unit (tacn = 1,4,7-triazacyclononane). In these compounds several electron-transfer steps were detected by electrochemical methods which are assigned to different redox processes located at individual electrochemically active components (Mn, Ru, bipyridyl, phenolate). For example, in the "mononuclear" compounds [(LMn)-Mn-n](PF6), (n = 1 or 2) Mn(II), Mn(II), and Mn(IV) are accessible and three Ru(II) centers are reversibly oxidized to Ru(III), and in addition, the coordinated phenolate can be oxidized to a highly reactive, coordinated phenoxyl radical. In several cases very slow heterogeneous electron-transfer rates were observed for redox processes involving the manganese centers. [References: 51]
机译:为了模拟氧化还原活性和光活性组分沿光系统II的电子传递路径的排列,已合成了由一,二或三个锰离子,可氧化的酚盐和三(2,2'-联吡啶基)钌(II)型单元作为光敏剂。这些模型络合物被认为是单核([(LMn)-Mn-n](PF6)(m)),双核([(LMn2IV)-Mn-1a-(mu-O)(2)](PF6)( 6))。或三核([(LMnMnMnLn)-Mn-n-Mn-II-Mn-II-L-II](PF6)(12)关于存在的锰中心数。在二(mu-oxo)-二锰化合物[(LMn2IV)-Mn-1a(mu-O)(2)](PF6)(6)的情况下,锰离子之间的电子耦合具有强反铁磁性。配体” [H2L1a](4+)由两个三(联吡啶)钌(II)型单元共价结合到双大环Me(2)dtne主链上,锰离子通过另外的酚盐氧与之配位(Me(2 )dtne = 1,2-双(4-甲基-1,4,7-三氮杂环烯基)乙烷)。在化合物[(LMnMnMnLn)-Mn-n-Mn-II-Mn-II-L-II](PF6)(12)中观察到弱的反铁磁耦合,其中三种金属呈线性排列(面共享八面体) 。它们分别被每个去质子化的“配体” [H3Ln](6+)的三个酚氧桥连。每个[H3Ln](6+)配体(n = 1,2)由带有三个悬臂酚的tacn环组成,每个悬臂酚均与三(联吡啶)钌(II)型单元(tacn = 1,4, 7-三氮杂环壬烷)。在这些化合物中,通过电化学方法检测了几个电子转移步骤,这些步骤被分配给位于单个电化学活性成分(Mn,Ru,联吡啶基,酚盐)上的不同氧化还原过程。例如,在“单核”化合物中,[(LMn)-Mn-n](PF6),(n = 1或2)Mn(II),Mn(II)和Mn(IV)是可及的,而三个Ru( II)中心被可逆地氧化为Ru(III),此外,配位酚盐可被氧化为高反应性,配位苯氧基自由基。在某些情况下,对于涉及锰中心的氧化还原过程,观察到非常慢的异质电子传输速率。 [参考:51]

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