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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Fluorophenyl-substituted Fe-only hydrogenases active site ADT models: different electrocatalytic process for proton reduction in HOAc and HBF4/Et2O
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Fluorophenyl-substituted Fe-only hydrogenases active site ADT models: different electrocatalytic process for proton reduction in HOAc and HBF4/Et2O

机译:氟苯基取代的仅铁加氢酶活性位点ADT模型:HOAc和HBF4 / Et2O质子还原的不同电催化过程

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摘要

A set of fluorophenyl-substituted adt-bridged Fe2S2 active site models of Fe-only hydrogenase, [(m-SCH2)(2)NR]Fe-2(CO)(6) (1, R=C6F4CF3-p; 2, R = C6H4CF3-p) and [(mu-SCH2)(2)NR]Fe-2(CO)(5)(PPh3) (3, R = C6F4CF3-p; 4, R = C6H4CF3-p), have been synthesized and well characterized. Spectroscopic and electrochemical studies demonstrate that the aryl-substituted complexes 1-4 are stable toward a strong acid HBF4/Et2O, and electrocatalytic process for the hydrogen production is mostly dependent on the strength of the available proton source. When CH3COOH is used as the proton source, the electrocatalytic process begins with successively two one-electron reduction processes to produce H-2 at Fe(0) Fe(0) (E-pc(2)); whereas in the presence of strong acid, HBF4/Et2O, the process is initiated by protonation of a N-bridged atom followed by reduction of the protonated N-bridged atom around -1.29 V, and then release of H-2 at Fe(0) Fe(I) (E-pc(1)). Varying the strength of acid leads to the initial electron-transfer step from the reduction of a protonated N-bridged atom to the active site of [Fe(I)Fe(I)].
机译:仅氟氢化酶[[m-SCH2)(2)NR] Fe-2(CO)(6)的一组氟苯基取代的adt桥式Fe2S2活性位点模型(1,R = C6F4CF3-p; 2, R = C6H4CF3-p)和[[mu-SCH2)(2)NR] Fe-2(CO)(5)(PPh3)(3,R = C6F4CF3-p; 4,R = C6H4CF3-p)合成且特征明确。光谱和电化学研究表明,芳基取代的配合物1-4对强酸HBF4 / Et2O稳定,并且制氢的电催化过程主要取决于可用质子源的强度。当CH3COOH用作质子源时,电催化过程从相继的两个单电子还原过程开始,以在Fe(0)Fe(0)(E-pc(2))处生成H-2。而在强酸HBF4 / Et2O的存在下,该过程由N-桥联原子的质子化开始,然后在-1.29 V附近还原质子化的N-桥联原子,然后在Fe(0 )Fe(I)(E-pc(1))。改变酸的强度会导致从质子化的N桥联原子还原到[Fe(I)Fe(I)]活性位的初始电子转移步骤。

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