Department of Chemistry, University of Michigan, 930 North University Avenue, Ann Arbor, MI 48109 (USA).
Angew Chem Int Ed Engl. 2013 Nov 18;52(47):12283-7. doi: 10.1002/anie.201305291. Epub 2013 Oct 2.
Stable but able: Chemical and electrochemical reduction of a five-coordinate high-spin non-heme {FeNO}(7) complex (see structure: N blue, Fe orange, and O red) generated the first stable high-spin (S=1) non-heme {FeNO}(8) model complex. The finding that the reduction is metal-centered and causes a decrease in FeNO covalency indicates that in biological systems, reduction activates stable non-heme FeNO units for further transformations.
通过化学和电化学还原五配位高自旋非血红素 {FeNO}(7) 配合物(结构如图所示:N 蓝色,Fe 橙色,O 红色),生成了首个稳定的高自旋(S=1)非血红素 {FeNO}(8) 模型配合物。该还原反应为金属中心反应且导致 FeNO 共价键的削弱这一事实表明,在生物体系中,还原作用使稳定的非血红素 FeNO 单元活化,从而进一步发生转化。