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含PSiP钳形配体的铱的阳离子、中性和阴离子氢化物

Cationic, Neutral, and Anionic Hydrides of Iridium with PSiP Pincers.

作者信息

Suárez Elizabeth, Plou Pablo, Gusev Dmitry G, Martín Marta, Sola Eduardo

机构信息

Instituto de Síntesis Química y Catálisis Homogénea, CSIC, Universidad de Zaragoza , Zaragoza E50009, Spain.

Department of Chemistry, Wilfrid Laurier University , Waterloo, Ontario N2L 3C5, Canada.

出版信息

Inorg Chem. 2017 Jun 19;56(12):7190-7199. doi: 10.1021/acs.inorgchem.7b00833. Epub 2017 Jun 2.

Abstract

This work describes synthetic routes from the known precursor [IrClH{κP,P,Si-Si(Me)(CH-2-PiPr)}] (1) to new hydride and polyhydride derivatives. Substituting the chloride ligand with triflate leads to the five-coordinate complex [IrH{κO-OS(CF)}{κP,P,Si-Si(Me)(CH-2-PiPr)}] (2), which can undergo reversible coordination of water (HO) or dihydrogen (H) to generate respectively the cationic derivative IrH{κP,P,Si-Si(Me)(CH-2-PiPr)}(OH) (3) or the neutral trans-hydride-dihydrogen [IrH{κO-OS(CF)}{κP,P,Si-Si(Me)(CH-2-PiPr)}(η-H)] (6) in equilibrium. The use of acetonitrile or carbon monoxide (CO) excess instead of water produces stable analogues of 3 (complexes 4 or 5, respectively). The reaction between 1 and NaBH affords the tetrahydroborate derivative [IrH{κH-HBH}{κP,P,Si-Si(Me)(CH-2-PiPr)}] (7), which can be protonated with triflic acid to form 2 or with HBF to give the dinuclear cationic derivative (μ:κH,κH-BH)[IrH{κP,P,Si-Si(Me)(CH-2-PiPr)}] (8). The reactions of 7 with alcohols afford either the dihydride-carbonyl [IrH{κP,P,Si-Si(Me)(CH-2-PiPr)}(CO)] (9) or the known tetrahydride [IrH{κP,P,Si-Si(Me)(CH-2-PiPr)}] (10), depending on the ease of alcohol decarbonylation. NMR observations and density functional theory calculations on the fluxional behavior of 10 indicate that the spatial contour of the mer PSiP framework conditions hydride-ligand exchanges. Complex 10 reacts with NaH in tetrahydrofuran to form the anionic trihydride [IrH{κP,P,Si-Si(Me)(CH-2-PiPr)}]Na (11), which exists as a mixture of fac and mer isomers in equilibrium.

摘要

这项工作描述了从已知前体[IrClH{κP,P,Si - Si(Me)(CH - 2 - PiPr)}](1)到新型氢化物和多氢化物衍生物的合成路线。用三氟甲磺酸盐取代氯配体可得到五配位配合物[IrH{κO - OS(CF)}{κP,P,Si - Si(Me)(CH - 2 - PiPr)}](2),它能与水(HO)或氢气(H)发生可逆配位,分别生成阳离子衍生物IrH{κP,P,Si - Si(Me)(CH - 2 - PiPr)}(OH)(3)或中性反式氢化物 - 二氢[IrH{κO - OS(CF)}{κP,P,Si - Si(Me)(CH - 2 - PiPr)}(η - H)](6),二者处于平衡状态。用过量乙腈或一氧化碳(CO)代替水会分别生成3的稳定类似物(配合物4或5)。1与硼氢化钠反应得到四氢硼酸盐衍生物[IrH{κH - HBH}{κP,P,Si - Si(Me)(CH - 2 - PiPr)}](7),它可用三氟甲磺酸质子化形成2,或用HBF质子化得到双核阳离子衍生物(μ:κH,κH - BH)[IrH{κP,P,Si - Si(Me)(CH - 2 - PiPr)}](8)。7与醇反应,根据醇脱羰基的难易程度,可得到二氢化物 - 羰基[IrH{κP,P,Si - Si(Me)(CH - 2 - PiPr)}(CO)](9)或已知的四氢化物[IrH{κP,P,Si - Si(Me)(CH - 2 - PiPr)}](10)。对10的动态行为进行的核磁共振观测和密度泛函理论计算表明,mer PSiP骨架的空间轮廓决定了氢化物 - 配体交换。配合物10在四氢呋喃中与氢化钠反应形成阴离子三氢化物[IrH{κP,P,Si - Si(Me)(CH - 2 - PiPr)}]Na(11),它以面式和mer异构体的混合物形式存在并处于平衡状态。

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