REACTIVITY OF RU(OEP)(ARYL)2 COMPLEXES IN EXTREME OXIDATION-STATES

被引:9
作者
SEYLER, JW [1 ]
SAFFORD, LK [1 ]
LEIDNER, CR [1 ]
机构
[1] PURDUE UNIV,DEPT CHEM,W LAFAYETTE,IN 47907
关键词
D O I
10.1021/ic00047a017
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Cyclic voltammetry has been employed to study the reactivity of Ru(OEP)(p-XC6H4)2 (OEP = octaethylporphyrin dianion; X = H, CH3, OCH3, Cl, F) complexes in extreme oxidation states. As previously demonstrated for Ru(OEP()(C6H5)2, the [Ru(OEP)(aryl)2]+ complexes undergo Ru-to-N migration of an aryl group, while the [Ru(OEP)(aryl)2]2- complexes lose aryl- to form [Ru(OEP)(aryl)]-. The rates of these reactions (i.e., the stability of the highly oxidized or reduced complexes) depend on the nature of the aryl group. The stability of the [Ru(OEP)(p-XC6H4)2]2- complexes lies in the order Cl much greater than F > OCH3 > H > CH3 and is very sensitive to the ionic strength of the solution. This order results in a curved Hammett plot when the combined sigmap parameter is employed but in a roughly linear plot when inductive effects alone (sigma(I)) are considered. The stability of the [Ru(OEP)(p-XC6H4)2]+ complexes lies in the order Cl > F > OCH3 greater than or similar to CH3 greater than or similar to H at room temperature. The enthalpies of activation for the [Ru(OEP)(p-XC6H4)2]+ reactions follow the trend F > H greater than or similar to Cl > CH3 - OCH3, With DELTAH double dagger values in the range 9-14 kcal/mol. The entropies of activation follow the same trend, with DELTAS(double dagger) values in the range -9 to +4.5 cal/(mol.K). Closer inspection of these data reveals that the major difference exists for X = F (DELTAH double dagger = 14 kcal/mol, DELTAS double dagger = 4.5 cal/(mol.K); the remaining four complexes show similar activation parameters (DELTAH double dagger = 9.3-10.8 kcal/mol, DELTAS double dagger = -4 to -9 cal/(mol.K)). A discussion of the mechanisms of these and related redox-induced reactions is provided.
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页码:4300 / 4307
页数:8
相关论文
共 48 条
[1]   ELECTROCHEMISTRY OF (TETRAPHENYLPORPHINATO)RHODIUM(III) ALKYL AND ALKYL HALIDE-COMPLEXES - EFFECT OF THE SIGMA-BONDED LIGAND ON PORPHYRIN REACTIVITY [J].
ANDERSON, JE ;
LIU, YH ;
KADISH, KM .
INORGANIC CHEMISTRY, 1987, 26 (25) :4174-4179
[2]   FORMATION AND FATE OF IRON CARBENE COMPLEXES IN REACTIONS BETWEEN A DIAZOALKANE AND IRON PORPHYRINS - RELEVANCE TO THE MECHANISM OF FORMATION OF N-SUBSTITUTED HEMES IN CYTOCHROME-P-450 DEPENDENT OXIDATION OF SYDNONES [J].
ARTAUD, I ;
GREGOIRE, N ;
LEDUC, P ;
MANSUY, D .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1990, 112 (19) :6899-6905
[3]  
ATWOOD JD, 1985, INORGANIC ORGANOMETA
[4]   H-1 NUCLEAR-MAGNETIC-RESONANCE STUDIES OF THE REDUCTION OF PARAMAGNETIC IRON(III) ALKYL PORPHYRIN COMPLEXES TO DIAMAGNETIC IRON(II) ALKYL COMPLEXES [J].
BALCH, AL ;
CORNMAN, CR ;
SAFARI, N ;
LATOSGRAZYNSKI, L .
ORGANOMETALLICS, 1990, 9 (09) :2420-2421
[5]   RUPTURE AND REPAIR OF THE PORPHYRIN INNER CORE - CARBON NITROGEN BOND BREAKING AND FORMATION IN RUTHENIUM COMPLEXES OF AN N,N'-BRIDGED PORPHYRIN [J].
BALCH, AL ;
CHAN, YW ;
OLMSTEAD, MM ;
RENNER, MW ;
WOOD, FE .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1988, 110 (12) :3897-3902
[6]  
BARD AJ, 1980, ELECTROCHEMICAL METH, pCH4
[7]  
BARD AJ, 1978, ENCY ELECTROCHEMISTR, P106
[8]   INDUCTIVE, STERIC, AND ENVIRONMENTAL-EFFECTS IN THE NON-AQUEOUS ELECTROCHEMISTRY OF HEXAKIS(ARYL ISOCYANIDE)CHROMIUM COMPLEXES [J].
BOHLING, DA ;
EVANS, JF ;
MANN, KR .
INORGANIC CHEMISTRY, 1982, 21 (09) :3546-3551
[9]   THE ORGANOMETALLIC CHEMISTRY OF TRANSITION-METAL PORPHYRIN COMPLEXES [J].
BROTHERS, PJ ;
COLLMAN, JP .
ACCOUNTS OF CHEMICAL RESEARCH, 1986, 19 (07) :209-215
[10]  
CALLOT HJ, 1984, NOUV J CHIM, V8, P765