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稀土元素钇、镧和镥与金属环己烷环中磷的灵活相互作用。

Flexible interactions of the rare-earth elements Y, La, and Lu with phosphorus in metallacyclohexane rings.

作者信息

Minko Yury, Fetrow Taylor V, Sharma Shikha, Cashman Brenna K, Tondreau Aaron M

机构信息

Los Alamos National Laboratory Los Alamos New Mexico 87545 USA

出版信息

Chem Sci. 2024 Jul 8;15(30):12138-12147. doi: 10.1039/d4sc02077d. eCollection 2024 Jul 31.

Abstract

A geometrically flexible bifunctional (bis)aminophosphine ligand was synthesized in a three-component, one-pot Kabachnik-Fields reaction using butylphosphine, paraformaldehyde, and 3,5-dimethyl aniline. The product, bis((3,5-dimethylphenyl)aminomethyl) butylphosphine (BiAMP ), containing two secondary amines and a tertiary phosphine, was isolated in good yields. Deprotonation of both N-H groups with (trimethylsilyl)methylpotassium (K-CHSiMe), followed by salt metathesis with LaI, YI, and LuI generated the corresponding MI(BiAMP )(thf) complexes (M = Y (1), La (2), and Lu (3)) in good yields. A sterically encumbered indene, 1,3-diisopropyl-4,7-dimethyl-1-indene, Ind, was deprotonated and installed salt-metathesis to generate the organometallic series of η-indenide complexes, M(BiAMP )(ηInd)(thf) (M = Y (4), La (5), and Lu (6)). H, P, C, and Y NMR experiments, IR spectroscopy, and single crystal X-ray diffraction (SC-XRD), were used to characterize these complexes. The Y-P coupling constant was found to be variable depending on the modifiable coordination environment of the metal center, indicating potential as both a spectroscopic handle as well as providing insight into the influence of additional ligands on the metal center.

摘要

使用丁基膦、多聚甲醛和3,5-二甲基苯胺,通过三组分一锅法卡巴契尼克-菲尔德反应合成了一种几何形状灵活的双功能(双)氨基膦配体。产物双((3,5-二甲基苯基)氨基甲基)丁基膦(BiAMP)含有两个仲胺和一个叔膦,以良好的产率分离得到。用(三甲基甲硅烷基)甲基钾(K-CHSiMe)使两个N-H基团去质子化,然后与LaI、YI和LuI进行盐复分解反应,以良好的产率生成相应的MI(BiAMP)(thf)配合物(M = Y(1)、La(2)和Lu(3))。一种空间位阻茚,1,3-二异丙基-4,7-二甲基-1-茚,Ind,去质子化并通过盐复分解反应生成有机金属系列的η-茚基配合物,M(BiAMP)(ηInd)(thf)(M = Y(4)、La(5)和Lu(6))。使用H、P、C和Y核磁共振实验、红外光谱和单晶X射线衍射(SC-XRD)对这些配合物进行表征。发现Y-P耦合常数因金属中心可修饰的配位环境而异,这表明它既具有作为光谱处理手段的潜力,又能深入了解额外配体对金属中心的影响。

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