首页> 外文期刊>Journal of the American Chemical Society >Scope and mechanism of the C-H bond activation reactivity within a supramolecular host by an iridium guest: A stepwise ion pair guest dissociation mechanism - art. no. JA061412W
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Scope and mechanism of the C-H bond activation reactivity within a supramolecular host by an iridium guest: A stepwise ion pair guest dissociation mechanism - art. no. JA061412W

机译:铱客体在超分子主体内的C-H键活化反应性的范围和机理:逐步离子对客体解离机理-艺术。没有。 JA061412W

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摘要

A chiral self-assembled supramolecular M4L6 assembly has been shown to be a suitable host for a series of reactive monocationic half-sandwich iridium guests 1, 3, and 4 that are capable of activating C-H bonds. Upon encapsulation, selective C-H bond activation of organic substrates occurs. Precise size and shape selectivity are observed in the C-H bond activation of aldehydes and ether substrates. The reactions exhibit significant kinetic diastereoselectivities. Thermodynamic studies have shown that the iridium starting materials and products are bound strongly by the host assembly. The encapsulation process is largely entropy-driven. Kinetic investigations with water-soluble phosphine traps and added salts have provided evidence for a unique stepwise mechanism of guest dissociation for [4 subset of Ga4L6]. Iridium guest 4 first dissociates from the host cavity to form an ion pair with the host exterior. This species then fully dissociates from the host exterior into the bulk solution. Model ion pair intermediates were characterized directly with H-1 NMR NOESY techniques. The rate of iridium guest dissociation is slower than the rate observed for the C-H bond activation processes, indicating that the selective C-H bond activation reactivity occurs within the cavity of the supramolecular host.
机译:已显示手性自组装的超分子M4L6组装体是一系列能够激活C-H键的反应性单阳离子半夹心铱客户1、3和4的合适宿主。包封时,发生有机底物的选择性C-H键活化。在醛和醚底物的C-H键活化中观察到精确的尺寸和形状选择性。反应表现出显着的动力学非对映选择性。热力学研究表明,铱起始材料和产物受主体组装体牢固结合。封装过程主要由熵驱动。用水溶性膦阱和添加的盐进行的动力学研究为[4 Ga4L6的子集]客体解离的独特逐步机理提供了证据。铱客体4首先从主体腔解离以与主体外部形成离子对。然后,该物种从宿主外部完全解离为本体溶液。使用H-1 NMR NOESY技术直接表征模型离子对中间体。铱客体解离的速率比C-H键激活过程中观察到的速率慢,这表明选择性C-H键激活反应性发生在超分子宿主腔内。

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