Intramolecular electron transfer from Mn or ligand phenolate to photochemically generated RuIII in multinuclear Ru/Mn complexes.: Laser flash photolysis and EPR studies on photosystem II models

被引:64
作者
Burdinski, D [1 ]
Wieghardt, K [1 ]
Steenken, S [1 ]
机构
[1] Max Planck Inst Strahlenchem, D-45413 Mulheim, Germany
关键词
D O I
10.1021/ja991402d
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In a mononuclear Mn-IV and a trinuclear Mn-II complex, the ligands of which contain electron-rich phenols (coordinated to the Mn('s)) and covalently attached ruthenium(II) 2,2'-trisbipyridyl(=bpy)-type groups, intramolecular electron transfer (ET) from the phenolate ligand tin the mononuclear Mn-IV complex) or from a Mn-II tin the trinuclear Mn-II complex) to the photochemically (lambda(exc) = 455 nm) generated Ru-III takes place with k greater than or equal to 5 x 10(7) s(-1), giving rise to the corresponding phenoxyl radical (complexed to Mn-IV) or to Mn-III, respectively. Thus, in the trinuclear Mn-II complex, the source of the electron that reduces the photogenerated Ru-III(bpy(.-)) moiety is a Mn-II, in contrast to the situation with the mononuclear Mn-IV complex, where the electron stems from a phenolate. The half-life of the coordinated phenoxyl-type Ru(bpy)/Mn complex las produced in the presence of [Co-III(NH3)(5)Cl](2+)) is of the order 0.5--1 ms. The Ru(bpy) compound containing three (phenolate-ligated) Mn-II atoms is the first example of a photochemically induced intramolecular ET from a multinuclear Mn cluster to an attached "sensitizer", and the Ru complex containing one (phenolate-ligated) Mn-IV is the first case of an ET from a synthetic Mn-IV-coordinated phenolate to a photochemically produced oxidant (Ru-III).
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页码:10781 / 10787
页数:7
相关论文
共 78 条
[1]   Phenoxyl radical complexes of gallium, scandium, iron and manganese [J].
Adam, B ;
Bill, E ;
Bothe, E ;
Goerdt, B ;
Haselhorst, G ;
Hildenbrand, K ;
Sokolowski, A ;
Steenken, S ;
Weyhermuller, T ;
Wieghardt, K .
CHEMISTRY-A EUROPEAN JOURNAL, 1997, 3 (02) :308-319
[2]   OPTICAL SPECTROSCOPY OF THE ARYL CATION, THE INTERMEDIATE IN THE DECOMPOSITION OF ARENEDIAZONIUM SALTS [J].
AMBROZ, HB ;
PRZYBYTNIAK, GK ;
STRADOWSKI, C ;
WOLSZCZAK, M .
JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY A-CHEMISTRY, 1990, 52 (03) :369-374
[3]   PHOTOCHEMICAL PRODUCTION OF HYDROGEN AND OXYGEN FROM WATER - A REVIEW AND STATE-OF-THE-ART [J].
AMOUYAL, E .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 1995, 38 (1-4) :249-276
[4]   PHOTOCHEMICAL GENERATION OF RU(BPY)3+ AND O2- [J].
ANDERSON, CP ;
SALMON, DJ ;
MEYER, TJ ;
YOUNG, RC .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1977, 99 (06) :1980-1982
[5]  
ANDERSSON BA, 1991, PHOTOSYSTEM 2, V16, P1
[6]   Tyrosyl radicals in enzyme catalysis: Some properties and a focus on photosynthetic water oxidation [J].
Babcock, GT ;
Espe, M ;
Hoganson, C ;
LydakisSimantiris, N ;
McCracken, J ;
Shi, WJ ;
Styring, S ;
Tommos, C ;
Warncke, K .
ACTA CHEMICA SCANDINAVICA, 1997, 51 (05) :533-540
[7]   RAPID, LIGHT-INDUCED TRANSIENT IN ELECTRON-PARAMAGNETIC RESONANCE SIGNAL II ACTIVATED UPON INHIBITION OF PHOTOSYNTHETIC OXYGEN EVOLUTION [J].
BABCOCK, GT ;
SAUER, K .
BIOCHIMICA ET BIOPHYSICA ACTA, 1975, 376 (02) :315-328
[8]   REVEALING THE BLUEPRINT OF PHOTOSYNTHESIS [J].
BARBER, J ;
ANDERSSON, B .
NATURE, 1994, 370 (6484) :31-34
[9]  
BARRY BA, 1988, CHEM SCRIPTA, V28A, P117
[10]  
BARRY BA, 1994, MOL BIOL CYANOBACTER, P215