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氮化铁配合物的结构与反应性。

The structure and reactivity of iron nitride complexes.

机构信息

Department of Chemistry and Biochemistry, New Mexico State University, Las Cruces, NM 88003, USA.

出版信息

Dalton Trans. 2012 Feb 7;41(5):1423-9. doi: 10.1039/c1dt11674f. Epub 2011 Nov 24.

Abstract

The structure and reactivity of discrete iron nitride complexes is described. Six-coordinate, four-fold symmetric nitrides are thermally unstable, and have been characterized at cryogenic temperatures by an arsenal of spectroscopic methods. By contrast, four-coordinate, three-fold symmetric iron nitrides can be prepared at room temperature. A range of diamagnetic iron(IV) nitrides have been reported and in some cases, isolated. Among these are the isolable, yet reactive, tris(carbene)borate iron(IV) nitrides. These complexes can effect two-electron nitrogen atom transfer to a range of substrates, in some cases with complete atom transfer occuring through Fe-N bond cleavage. These nitrides are also active in single electron pathways, including the synthesis of ammonia by a mechanism involving hydrogen atom transfer to the nitride ligand. One-electron oxidation of a tris(carbene)borate iron(IV) nitride leads to an isolable iron(V) complex that is unusually reactive for a metal nitride.

摘要

离散氮化物配合物的结构和反应性被描述。六配位、四对称的氮化物在热上不稳定,并通过一系列光谱方法在低温下进行了表征。相比之下,四配位、三对称的铁氮化物可以在室温下制备。已经报道了一系列的顺磁性铁(IV)氮化物,在某些情况下,也可以分离得到。其中包括可分离但反应性的三(碳烯)硼酸铁(IV)氮化物。这些配合物可以对一系列底物进行两电子氮原子转移,在某些情况下,通过 Fe-N 键的断裂可以完全进行原子转移。这些氮化物也在单电子途径中活跃,包括通过涉及氢原子转移到氮化物配体的机制合成氨。三(碳烯)硼酸铁(IV)氮化物的单电子氧化导致可分离的铁(V)配合物,对于金属氮化物来说,它具有异常的反应性。

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