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二氮配位与炔基铁配合物的功能化

Dinitrogen Binding and Functionalization from a Low-Coordinate Alkynyliron Complex.

机构信息

Department of Chemistry, Yale University, New Haven, Connecticut 06511, United States.

出版信息

Inorg Chem. 2023 Jun 19;62(24):9335-9342. doi: 10.1021/acs.inorgchem.3c00167. Epub 2023 Jun 9.

Abstract

Alkynyl complexes of low-coordinate transition metals offer a sterically open environment and interesting bonding opportunities. Here, we explore the capacity of iron(I) alkynyl complexes to bind N and isolate a N complex including its X-ray crystal structure. Silylation of the N complex gives an isolable, formally iron(IV) complex with a disilylhydrazido(2-) ligand, but natural bond orbital analysis indicates that an iron(II) formulation is preferable. The structure of this compound is similar to an earlier reported phenyl complex in which phenyl migration forms a new N-C bond, but the alkynyl group does not migrate. DFT calculations are used to test the possible reasons why the alkynyl is resistant to migration, and these show that the large Fe-C bond energy in the alkynyl complex is a factor that could contribute to the lack of migration.

摘要

低配位过渡金属的炔基配合物提供了一个空间开阔的环境和有趣的成键机会。在这里,我们探索了铁(I)炔基配合物与 N 结合并分离 N 配合物的能力,包括其 X 射线晶体结构。N 配合物的硅烷化得到一个可分离的、形式上为铁(IV)的配合物,具有二硅基肼基(2-)配体,但自然键轨道分析表明,铁(II)的表述更为合适。该化合物的结构与先前报道的苯基配合物相似,其中苯基迁移形成了新的 N-C 键,但炔基基团没有迁移。DFT 计算用于测试炔基不易迁移的可能原因,结果表明炔基配合物中较大的 Fe-C 键能是导致其不易迁移的一个因素。

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