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一种还原型双金属钇-茂金属氢化物配合物[K(crypt)][(μ-Cp)Y(μ-H)](Cp = MeSi[CH(SiMe)-3])的合成及晶体学表征,钇-钇间距为3.4 Å

Synthesis and Crystallographic Characterization of a Reduced Bimetallic Yttrium -Metallocene Hydride Complex, [K(crypt)][(μ-Cp)Y(μ-H)] (Cp = MeSi[CH(SiMe)-3]), with a 3.4 Å Yttrium-Yttrium Distance.

作者信息

Wedal Justin C, Anderson-Sanchez Lauren M, Dumas Megan T, Gould Colin A, Beltrán-Leiva María J, Celis-Barros Cristian, Páez-Hernández Dayán, Ziller Joseph W, Long Jeffrey R, Evans William J

机构信息

Department of Chemistry, University of California, Irvine, California 92697, United States.

Department of Chemistry, University of California, Berkeley, California 94720, United States.

出版信息

J Am Chem Soc. 2023 May 17;145(19):10730-10742. doi: 10.1021/jacs.3c01405. Epub 2023 May 3.

Abstract

The reduction of a bimetallic yttrium -metallocene hydride was examined to explore the possible formation of Y-Y bonds with 4d Y(II) ions. The precursor [CpY(μ-H)(THF)] (Cp = MeSi[CH(SiMe)-3]) was synthesized by hydrogenolysis of the allyl complex CpY(η-CH)(THF), which was prepared from (CH)MgCl and [CpY(μ-Cl)]. Treatment of [CpY(μ-H)(THF)] with excess KC in the presence of one equivalent of 2.2.2-cryptand (crypt) generates an intensely colored red-brown product crystallographically identified as [K(crypt)][(μ-Cp)Y(μ-H)]. The two rings of each Cp ligand in the reduced anion [(μ-Cp)Y(μ-H)] are attached to two yttrium centers in a "flyover" configuration. The 3.3992(6) and 3.4022(7) Å Y···Y distances between the equivalent metal centers within two crystallographically independent complexes are the shortest Y···Y distances observed to date. Ultraviolet-visible (UV-visible)/near infrared (IR) and electron paramagnetic resonance (EPR) spectroscopy support the presence of Y(II), and theoretical analysis describes the singly occupied molecular orbital (SOMO) as an Y-Y bonding orbital composed of metal 4d orbitals mixed with metallocene ligand orbitals. A dysprosium analogue, [K(18-crown-6)(THF)][(μ-Cp)Dy(μ-H)], was also synthesized, crystallographically characterized, and studied by variable temperature magnetic susceptibility. The magnetic data are best modeled with the presence of one 4f Dy(III) center and one 4f(5d) Dy(II) center with no coupling between them. CASSCF calculations are consistent with magnetic measurements supporting the absence of coupling between the Dy centers.

摘要

对双金属钇茂金属氢化物的还原进行了研究,以探索与4d Y(II)离子形成Y-Y键的可能性。前驱体[CpY(μ-H)(THF)](Cp = MeSi[CH(SiMe)-3])通过烯丙基配合物CpY(η-CH)(THF)的氢解反应合成,后者由(CH)MgCl和[CpY(μ-Cl)]制备。在一当量的2.2.2-穴醚(穴醚)存在下,用过量的KC处理[CpY(μ-H)(THF)],生成一种颜色强烈的红棕色产物,经晶体学鉴定为[K(穴醚)][(μ-Cp)Y(μ-H)]。还原阴离子[(μ-Cp)Y(μ-H)]中每个Cp配体的两个环以“天桥”构型连接到两个钇中心。在两个晶体学独立的配合物中,等效金属中心之间的Y···Y距离为3.3992(6) Å和3.4022(7) Å,是迄今为止观察到的最短Y···Y距离。紫外可见/近红外(UV-visible/NIR)和电子顺磁共振(EPR)光谱证实了Y(II)的存在,理论分析将单占据分子轨道(SOMO)描述为由金属4d轨道与茂金属配体轨道混合而成的Y-Y键轨道。还合成了镝类似物[K(18-冠-6)(THF)][(μ-Cp)Dy(μ-H)],对其进行了晶体学表征,并通过变温磁化率进行了研究。磁性数据最好用存在一个4f Dy(III)中心和一个4f(5d) Dy(II)中心且它们之间无耦合来模拟。完全活性空间自洽场(CASSCF)计算与磁性测量结果一致,支持Dy中心之间不存在耦合。

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