REACTIVITY PATTERNS AND COMPARISONS IN 3 CLASSES OF SYNTHETIC COPPER DIOXYGEN (CU2-O2) COMPLEXES - IMPLICATION FOR STRUCTURE AND BIOLOGICAL RELEVANCE

被引:142
|
作者
PAUL, PP
TYEKLAR, Z
JACOBSON, RR
KARLIN, KD
机构
[1] JOHNS HOPKINS UNIV,DEPT CHEM,CHARLES & 34TH ST,BALTIMORE,MD 21218
[2] SUNY ALBANY,DEPT CHEM,ALBANY,NY 12222
关键词
D O I
10.1021/ja00014a027
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We have recently characterized three classes of peroxodicopper(II) complexes, which are formed reversibly from the reaction of Cu(I) precursors (1-3) with O2 at -80-degrees-C in solution. Here, we detail and compare the reactivities of [Cu2(XYL-O-)(O2)]+ (4, a phenoxo-bridged peroxodicopper(II) species having terminal Cu-O2 coordination), [{Cu-(TMPA)}2(O2)]2+ (5, a trans mu-1,2-peroxo-bridged complex with a tetradentate ligand on each copper(II) atom), and (Cu2(N4)(O2)]2+ (6, which contains a bridging peroxo moiety with tridentate groups at both copper atoms). Complexes 4 and 5 possess a basic or nucleophilic peroxo group, but 6 behaves differently, possessing a nonbasic or electrophilic peroxodicopper (II) moiety. Thus, reaction of PPh3 With 4 and 5 readily causes the stoichiometric displacement of the bound O2 ligad, producing Cu(I)-PPh3 complexes. With 6, slow but complete oxygen atom transfer occurs, giving triphenylphosphine oxide. Protonation (or acylation) reactions are particularly striking, as addition of HBF4 or HPF6 to 4 and 5 gives near-stoichiometric yields of H2O2 (from excess H+; iodometric titration), but 6 is relatively insensitive to protons. Carbon dioxide reacts with 4 and 5 to give peroxycarbonato complexes at -80-degrees-C, which decompose to carbonato compounds; 6 does not react with CO2. All three complexes 4-6 react with sulfur dioxide to give sulfato products. Trityl cation (Ph3C+) reacts with all the complexes to give benzophenone, but the relative yields again support the notion that the peroxo group in 6 is a poorer nucleophile. 2,4-Di-tert-butylphenol acts as a protic acid toward 4 and 5, but in the presence of 6, hydrogen atom abstraction leads to oxidatively coupled biphenol products. The reactions of 4-X-C6H4MgBr (X = CH3, F) with 4-6 produce mixtures of 4-X-C6H4OH and substituted biphenyls; product ratios again support the view that 6 is a better one-electron oxidant and electrophilic reagent. The relationship of the observed reactivity patterns and structures of 4-6 is discussed, and it suggested that the mu-eta-2:eta-2-binding proposed for 6 confers its unique reactivity. The relationship of the structure and reactivity of 6 to a related and previously described monooxygenase model system is discussed, as well as the relevance to the active site chemistry of copper proteins involved in O2 utilization.
引用
收藏
页码:5322 / 5332
页数:11
相关论文
共 50 条
  • [31] Synthesis, structure, and properties of two novel copper(II) complexes, [Cu(phen)(L)2]•6H2O and [Cu(phen)3]•(ClO4)2
    Hu, Feilong
    Yin, Xianhong
    Mi, Yan
    Zhang, Shanshan
    Luo, Weiqiang
    Zhuang, Yue
    INORGANIC CHEMISTRY COMMUNICATIONS, 2009, 12 (12) : 1189 - 1192
  • [32] Complexes of copper(II) carboxylates with ammonia. Crystal structure of Cu(O2CC9H19)(2)(NH3)(2)(H2O)
    Petric, M
    Leban, I
    Segedin, P
    POLYHEDRON, 1996, 15 (23) : 4277 - 4282
  • [33] Formation of {Cu2III (μ-O)2}2+ core due to dioxygen reactivity of a copper(I) complex supported by a new hybrid tridentate ligand:: Reaction with exogenous substrates
    Mandal, Sukanta
    De, Anindita
    Mukherjee, Rabindranath
    CHEMISTRY & BIODIVERSITY, 2008, 5 (08) : 1594 - 1608
  • [34] Copper(I) complex O2-reactivity with a N3S thioether ligand:: A copper-dioxygen adduct including sulfur ligation, ligand oxygenation, and comparisons with all nitrogen ligand analogues
    Lee, Dong-Heon
    Hatcher, Lanying Q.
    Vance, Michael A.
    Sarangi, Ritimukta
    Milligan, Ashley E.
    Sarjeant, Amy A. Narducci
    Incarvito, Christopher D.
    Rheingold, Arnold L.
    Hodgson, Keith O.
    Hedman, Britt
    Solomon, Edward I.
    Karlin, Kenneth D.
    INORGANIC CHEMISTRY, 2007, 46 (15) : 6056 - 6068
  • [35] Synthetic analogue of the {Fe2(μ-OH)2(μ-O2CR)}3+ core of soluble methane monooxygenase hydroxylase via synthesis and dioxygen reactivity of carboxylate-bridged diiron(II) complexes
    Lee, D
    Lippard, SJ
    INORGANIC CHEMISTRY, 2002, 41 (04) : 827 - 837
  • [36] Irreversible reduction of dioxygen by simple peralkylated diamine-copper(I) complexes: Characterization and thermal stability of a [Cu-2(mu-O)(2)](2+) core
    Mahadevan, V
    Hou, ZG
    Cole, AP
    Root, DE
    Lal, TK
    Solomon, EI
    Stack, TDP
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1997, 119 (49) : 11996 - 11997
  • [37] Band structure and phase stability of the copper oxides Cu2O, CuO, and Cu4O3
    Heinemann, Markus
    Eifert, Bianca
    Heiliger, Christian
    PHYSICAL REVIEW B, 2013, 87 (11)
  • [38] Molecular structure, bioavallability and bioactivity of [Cu(o-phen)2(cnge)](NO3))2 •2H2O and [Cu(o-phen)(cnge)(H2O)(NO3)2] complexes
    Ferrer, Evelina G.
    Lopez Tevez, Libertad L.
    Baeza, Natalia
    Correa, Maria J.
    Okulik, Nora
    Lezama, Luis
    Rojo, Teofilo
    Castellano, Eduardo E.
    Piro, Oscar E.
    Williams, Patricia A. M.
    JOURNAL OF INORGANIC BIOCHEMISTRY, 2007, 101 (05) : 741 - 749
  • [39] Structural diversity in aroylthiourea copper complexes - formation and biological evaluation of [Cu(I)(μ-S)SCl]2, cis-Cu(II)S2O2, trans-Cu(II)S2O2 and Cu(I)S3 cores
    Selvakumaran, Nagamani
    Sandhiya, Lakshmanan
    Bhuvanesh, Nattamai S. P.
    Senthilkumar, Kittusamy
    Karvembu, Ramasamy
    NEW JOURNAL OF CHEMISTRY, 2016, 40 (06) : 5401 - 5413
  • [40] Refinement of the crystal structure of bis(glycolato)copper(II), Cu(C2H3O3)2
    Ye, Qing-Song
    Xie, Ming-Jin
    Liu, Wei-Ping
    Chen, Xi-Zhu
    Chang, Qiao-Wen
    Yu, Yao
    ZEITSCHRIFT FUR KRISTALLOGRAPHIE-NEW CRYSTAL STRUCTURES, 2010, 225 (03): : 481 - 482