...
首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Mechanism of H2 Production by the[FeFe]H Subcluster of Di-Iron Hydrogenases:Implications for Abiotic Catalysts
【24h】

Mechanism of H2 Production by the[FeFe]H Subcluster of Di-Iron Hydrogenases:Implications for Abiotic Catalysts

机译:二铁加氢酶[FeFe] H亚簇产生H2的机理:对非生物催化剂的意义

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

To explore the possibility that the active center of the di-iron hydrogenases,the[FeFe]_H subcluster,can serve by itself as an efficient hydrogen-producing catalyst,we perform comprehensive calculations of the catalytic properties of the subcluster in vacuo using first principles density functional theory.For completeness,we examine all nine possible geometrical isomers of the Fe(II)Fe(I)active-ready state and report in detail on the relevant ones that lead to the production of H2.These calculations,carried out at the generalized gradient approximation level,indicate that the most efficient catalytic site in the isolated[FeFe]_H subcluster is the Fe_d center distal(d)to the[4Fe-4S]_H cluster;the other iron center site,the proximal Fe_p,also considered in this study,has much higher energy barriers.The pathways with the most favorable kinetics(lowest energy barrier to reaction)proceed along configurations with a CO ligand in a bridging position.The most favorable of these CO-bridging pathways start from isomers where the distal CN~-ligand is in up position,the vacancy V in down position,and the remaining distal CO is either cis or trans with respect to the proximal CO.These isomers,not observed in the available enzyme X-ray structures,are only marginally less stable than the most stable nonbridging Fe_d-CO-terminal isomer.Our calculations indicate that this CO-bridging CN-up isomer has a small barrier to production of H2 that is compatible with the observed rate for the enzyme.These results suggest that catalysis of H2 production could proceed on this stereochemically modified[FeFe]_H subcluster alone,thus offering a promising target for functional bioinspired catalyst design.
机译:为了探索二价铁氢化酶[FeFe] _H子簇的活性中心本身可以作为有效的产氢催化剂的可能性,我们使用第一性原理对子簇在真空中的催化性能进行了综合计算为了完整起见,我们检查了Fe(II)Fe(I)活性就绪状态的所有九种可能的几何异构体,并详细报告了导致H2产生的相关异构体。这些计算在广义梯度逼近水平,表明孤立的[FeFe] _H子簇中最有效的催化位点是[4Fe-4S] _H团簇的远端Fe_d中心;另一个铁中心位点,即Fe_p的近端,在这项研究中考虑的是,具有更高的能量壁垒。具有最有利的动力学(反应的最低能量壁垒)的路径是沿着具有CO配位基的构型进行的。它们总是从远端CN〜-配体处于向上位置,空位V处于向下位置,剩余的远端CO相对于近端CO的顺式或反式的异构体开始。这些异构体在可用的酶X中未观察到射线结构仅比最稳定的非桥联Fe_d-CO末端异构体稍差。我们的计算表明,这种桥联CN-up异构体对H2的生成具有较小的障碍,与观察到的H2速率兼容这些结果表明,仅在这种经立体化学修饰的[FeFe] _H亚簇上可以进行H2产生的催化作用,从而为功能性生物启发性催化剂设计提供了有希望的目标。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号