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含官能团亚胺酚配体的Mo(iv)/(vi)配合物的氧活化及催化需氧氧化反应

Oxygen activation and catalytic aerobic oxidation by Mo(iv)/(vi) complexes with functionalized iminophenolate ligands.

作者信息

Zwettler Niklas, Judmaier Martina E, Strohmeier Lara, Belaj Ferdinand, Mösch-Zanetti Nadia C

机构信息

Institute of Chemistry, Inorganic Chemistry, University of Graz, Schubertstrasse 1, 8010 Graz, Austria.

出版信息

Dalton Trans. 2016 Oct 7;45(37):14549-60. doi: 10.1039/c6dt01692h. Epub 2016 Jul 8.

Abstract

Synthesis of molybdenum(vi) dioxido complexes 1-3, coordinated by one or two functionalized iminophenolate ligands HL1 or HL2, bearing a donor atom side chain or a phenyl substituent, respectively, allowed for systematic investigation of the oxygen atom transfer (OAT) reactivity of such complexes towards phosphanes. Depending on stoichiometry and employed phosphane (PMe3 or PPh3), different molybdenum(iv) and molybdenum(v) complexes 4-7 were obtained. Whereas molybdenum(iv) complexes 4 and 5, bearing a terminal PMe3 ligand, readily reacted with molecular O2 to form oxido peroxido complexes 8 and 9, phosphane free μ-oxido bridged dinuclear molybdenum(v) complexes 6 and 7 proved to be stable towards oxidation with molecular O2 under ambient conditions. Single-crystal X-ray diffraction analyses revealed different isomeric structures in the solid state for dioxido complexes 1 and 2 in comparison with oxido phosphane complex 5, dinuclear oxido μ-oxido complex 6 and oxido peroxido complexes 8 and 9, pointing towards an isomeric rearrangement during OAT. Compounds 1 and 2 were furthermore tested for their ability to catalyze the aerobic oxidation of PMe3 and PPh3. A significant difference in catalytic activity has been observed in the oxidation of PMe3, where complex 1 bearing donor atom functionalized ligands led to higher conversion and selectivity than complex 2 coordinated by phenyl iminophenolate ligands. In the oxidation of PPh3, complex 2 leads to higher conversion compared to 1. In a control experiment, phenyl-based dinuclear μ-oxido complex 7, derived from complex 2, was found to be catalytically active, which suggests a lower energy barrier for disproportionation into [MoO(L)2] and [MoO2(L)2] in comparison with methoxypropylene based compound 6, a prerequisite for subsequent reactivity toward molecular O2.

摘要

合成了由一个或两个功能化亚胺基酚配体HL1或HL2配位的钼(VI)二氧化物配合物1-3,它们分别带有一个供体原子侧链或一个苯基取代基,从而能够系统地研究此类配合物对膦的氧原子转移(OAT)反应活性。根据化学计量比和所用膦(PMe3或PPh3),得到了不同的钼(IV)和钼(V)配合物4-7。带有末端PMe3配体的钼(IV)配合物4和5很容易与分子氧反应形成氧化过氧化物配合物8和9,而无膦的μ-氧化桥联双核钼(V)配合物6和7在环境条件下被证明对分子氧氧化是稳定的。单晶X射线衍射分析表明,与氧化膦配合物5、双核氧化μ-氧化配合物6以及氧化过氧化物配合物8和9相比,二氧化物配合物1和2在固态下具有不同的异构体结构,这表明在氧原子转移过程中发生了异构体重排。此外,还测试了化合物1和2催化PMe3和PPh3有氧氧化的能力。在PMe3的氧化反应中观察到了催化活性的显著差异,其中带有供体原子功能化配体的配合物1比由苯基亚胺基酚配体配位的配合物2具有更高的转化率和选择性。在PPh3的氧化反应中,配合物2比1具有更高的转化率。在对照实验中,发现由配合物2衍生的基于苯基的双核μ-氧化配合物7具有催化活性,这表明与基于甲氧基丙烯的化合物6相比,其歧化成[MoO(L)2]和[MoO2(L)2]的能垒较低,这是随后与分子氧发生反应的先决条件。

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