Aza- and Oxadithiolates Are Probable Proton Relays in Functional Models for the [FeFe]-Hydrogenases

被引:183
作者
Barton, Bryan E. [1 ]
Olsen, Matthew T. [1 ]
Rauchfuss, Thomas B. [1 ]
机构
[1] Univ Illinois, Sch Chem Sci, Urbana, IL 61801 USA
关键词
D O I
10.1021/ja8057666
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The dithiolate cofactor for the [FeFe]-hydrogenase models, Fe-2(xdt)(CO)(2)(dppv)(2) (where xdt = 1,3-propanedithiolate (pdt), azadithiolate (adt), (SCH2)(2)NH, and oxadithiolate (odt), (SCH2)(2)O; dppv = cis-1,2-bis(diphenylphosphino)ethylene) have been probed for their functionality as proton relays enabling formation and deprotonation of terminal hydrides. Compared to the propanedithiolate derivative, the azadithiolate and oxaditiholate show enhanced rates of proton transfer between solution and the terminal site on one Fe center. The results are consistent with the heteroatom of the dithiolate serving a gating role for both protonation and deprotonation. The pK(a) of the transiently formed ammonium (pK(2)(2)(CD)(Cl), 5.7-8.2) or oxonium (pK(2)(2)(CD)(Cl)-4.7-1.6) regulates the proton transfer. As a consequence, only the azadithiolate is capable of yielding the terminal hydride from weak acids. The aza- and oxadithiolates manifested the advantages of proton relays: the odt derivative proved to be a faster catalyst for hydrogen evolution than the pdt derivative as indicated from cyclic voltammetry plots of i(c)/i(p) vs [H*]. The adt derivative was capable of proton reduction from the weak acid [HPMe2Ph]BF4 (pK(2)(2)(CD)(Cl) = 5.7). The proton relay function does not apply to the isomeric bridged-hydrides [Fe-2(xdt)(mu-H)(CO)(2)(dppv)(2)]*, where the hydride is too distant and too basic to interact to be affected by the heteroatomic relay site. None of these mu-H species can be deprotonated.
引用
收藏
页码:16834 / +
页数:3
相关论文
共 25 条
  • [1] Terminal hydride in [FeFe]-hydrogenase model has lower potential for H2 production than the isomeric bridging hydride
    Barton, Bryan E.
    Rauchfuss, Thomas B.
    [J]. INORGANIC CHEMISTRY, 2008, 47 (07) : 2261 - 2263
  • [2] Electrochemical insights into the mechanisms of proton reduction by [Fe2(CO)6{μ-SCH2N(R)CH2S}] complexes related to the [2Fe]H subsite of [FeFe]hydrogenase
    Capon, Jean-Francois
    Ezzaher, Salah
    Gloaguen, Frederic
    Petillon, Francois Y.
    Schollhammer, Philippe
    Talarmin, Jean
    [J]. CHEMISTRY-A EUROPEAN JOURNAL, 2008, 14 (06) : 1954 - 1964
  • [3] Ligand versus metal protonation of an iron hydrogenase active site mimic
    Eilers, Gerriet
    Schwartz, Lennart
    Stein, Matthias
    Zampella, Giuseppe
    de Gioia, Luca
    Ott, Sascha
    Lomoth, Reiner
    [J]. CHEMISTRY-A EUROPEAN JOURNAL, 2007, 13 (25) : 7075 - 7084
  • [4] Hydrogen generation from weak acids: Electrochemical and computational studies of a diiron hydrogenase mimic
    Felton, Greg A. N.
    Vannucci, Aaron K.
    Chen, Jinzhu
    Lockett, L. Tori
    Okumura, Noriko
    Petro, Benjamin J.
    Zakai, Uzma I.
    Evans, Dennis H.
    Glass, Richard S.
    Lichtenberger, Dennis L.
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2007, 129 (41) : 12521 - 12530
  • [5] Iron-only hydrogenase mimics. Thermodynamic aspects of the use of Electrochemistry to evaluate catalytic efficiency for hydrogen generation
    Felton, Greg A. N.
    Glass, Richard S.
    Lichtenberger, Dennis L.
    Evans, Dennis H.
    [J]. INORGANIC CHEMISTRY, 2006, 45 (23) : 9181 - 9184
  • [6] Structure/function relationships of [NiFe]- and [FeFe]-hydrogenases
    Fontecilla-Camps, Juan C.
    Volbeda, Anne
    Cavazza, Christine
    Nicolet, Yvain
    [J]. CHEMICAL REVIEWS, 2007, 107 (10) : 4273 - 4303
  • [7] Pendant bases as proton relays in iron hydride and dihydrogen complexes
    Henry, RM
    Shoemaker, RK
    DuBois, DL
    DuBois, MR
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2006, 128 (09) : 3002 - 3010
  • [8] Electrocatalytic hydrogen evolution at low overpotentials by cobalt macrocyclic glyoxime and tetraimine complexes
    Hu, Xile
    Brunschwig, Bruce S.
    Peters, Jonas C.
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2007, 129 (29) : 8988 - 8998
  • [9] JIANG S, 2007, DALTON T, V89, P6
  • [10] SLOW PROTON-TRANSFER REACTIONS IN ORGANOMETALLIC AND BIOINORGANIC CHEMISTRY
    KRAMARZ, KW
    NORTON, JR
    [J]. PROGRESS IN INORGANIC CHEMISTRY, VOL 42, 1994, 42 : 1 - 65