Münster Katharina, Baabe Dirk, Kintzel Benjamin, Böhme Michael, Plass Winfried, Raeder Jan, Walter Marc D
Institut für Anorganische und Analytische Chemie, Technische Universität Braunschweig, Hagenring 30, Braunschweig38106, Germany.
Institut für Anorganische und Analytische Chemie, Friedrich-Schiller-Universität Jena, Humboldtstraße 8, Jena07743, Germany.
Inorg Chem. 2022 Nov 28;61(47):18883-18898. doi: 10.1021/acs.inorgchem.2c02768. Epub 2022 Nov 15.
The half-sandwich complex [Cp'Fe{N(dipp)(SiMe)}] (; Cp' = 1,2,4-tri--butylcyclopentadienyl and dipp = 2,6-diisopropylphenyl) and the mixed metallocene [Cp'Fe{(η-CHPr)═N(SiMe)}] () formed in the reaction between [{Cp'Fe(μ-I)}] and [Li{N(dipp)(SiMe)}] were characterized by NMR spectroscopy and X-ray diffraction analysis. complements the series of low-coordinate, quasi-linear iron amido half-sandwich complexes [Cp'Fe{N(Bu)(SiMe)}] () and [Cp'Fe{N(SiMe)}] () reported earlier, and all three compounds were characterized in the solid state by zero-field Fe Mössbauer spectroscopy and magnetic susceptibility measurements, confirming their = 2 electronic ground state. Moreover, the Mössbauer absorption spectra reveal slow paramagnetic relaxation at low temperatures with large internal magnetic hyperfine fields of = 96.4 T (, 20 K), = 101.3 T (, 15 K), and = 96.9 T (, 20 K). The magnetic measurements further confirm that the presence of significant axial zero-field splitting and slow relaxation of magnetization is detected, which is revealed even in the absence of a static magnetic field in the case of . Supplementary and density functional theory calculations were performed and support the experimental data.
通过核磁共振光谱和X射线衍射分析对在[{Cp'Fe(μ-I)}]与[Li{N(dipp)(SiMe)}]的反应中形成的半夹心配合物[Cp'Fe{N(dipp)(SiMe)}](;Cp' = 1,2,4-三叔丁基环戊二烯基,dipp = 2,6-二异丙基苯基)和混合茂金属[Cp'Fe{(η-CHPr)═N(SiMe)}]()进行了表征。 补充了之前报道的一系列低配位、准线性铁酰胺基半夹心配合物[Cp'Fe{N(Bu)(SiMe)}]()和[Cp'Fe{N(SiMe)}](),并且通过零场Fe穆斯堡尔光谱和磁化率测量对所有这三种化合物的固态进行了表征,证实了它们的S = 2电子基态。此外,穆斯堡尔吸收光谱显示在低温下具有缓慢的顺磁弛豫,其内部大磁超精细场分别为B = 96.4 T(,20 K)、B = 101.3 T(,15 K)和B = 96.9 T(,20 K)。磁性测量进一步证实检测到存在显著的轴向零场分裂和缓慢的磁化弛豫,在的情况下,即使在没有静磁场的情况下也能观察到。进行了补充的和密度泛函理论计算,其支持实验数据。