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首页> 外文期刊>Polyhedron: The International Journal for Inorganic and Organometallic Chemistry >Rhodium assisted peri-C-H activation in benzothiazolyl-hydrazone derivatized pyrene
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Rhodium assisted peri-C-H activation in benzothiazolyl-hydrazone derivatized pyrene

机译:铑辅助Peri-C-H活化在苯并噻唑基 - 腙衍生化芘

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Benzothiazolyl hydrazones incorporating polyaromatic pyrene moiety, 1 (H2LPyr), have been smartly employed as a directing group (DG) to bring about the rhodium assisted C-H bond activation at the peri position of pyrene. The formation of peri-metallated [Rh-III(L-Pyr)(H)(PPh3)(2)] 3 is a logical consequence of its co-product, a dihalo complex [Rh-III(HLPyr)Cl-2(PPh3)(2)] 2, in due course of the reaction between the ligand and Wilkinson's catalyst. The initial formation of the complex 2 in the initial stage of the reaction has been envisaged as the driving force for the generation of organometallic complex 3, where paucity of chloride ion triggers the tridentate coordination mode [L-Pyr](2-) via in situ C-H activation. The underlying mechanism of formation of 3 has been observed to proceed via oxidative addition, involving a two electron transfer from the appropriate electron reservoir [Rh-I] to the ligand scaffold and this is accompanied by an intramolecular ligand to metal hydride transfer via a PCET pathway. Complexes 2 and 3 have been found to be redox active and are prone to oxidation at moderate potentials where the responses are analyzed to be exclusively ligand-centred in nature. Significantly, cyclometallated complex is more prone to oxidation relative to the non-activated compound, 2. The redox event has been meticulously scrutinized by DFT, revealing the destabilization of HOMO in 3 by similar to 0.5 eV in comparison to 2. Both complexes provide rich optoelectronic features that have been analyzed to be predominantly (ILCT)-I-1 in nature. (C) 2020 Elsevier Ltd. All rights reserved.
机译:苯并噻唑基腙掺入聚芳族芘基,1(H2LPyr),已被巧妙地用作定向基团(DG)带来在芘的迫位辅助C-H键活化的铑。形成围金属化的[Rh-III(L-比利牛斯)(H)(PPH3)(2)]图3是其副产物,二卤代复杂的[Rh-III(HLPyr)CL-2(的逻辑结果PPH3)(2)] 2,在配体和Wilkinson催化剂之间的反应的适当时候。的配合物2在反应的初始阶段的初始形成已设想作为用于有机金属配合物3产生的驱动力,其中氯离子的缺乏触发经由三齿配位模式[L-比利](2-)原位CH活化。形成的3的基本机制已经观察到通过氧化加成进行,涉及从相应的电子贮存器的[Rh-1]至配体支架的双电子转移,这是伴随着分子内配位体与金属氢化物转移经由PCET通路。配合物2和3已被发现是氧化还原活性和易于氧化,在其中的响应进行分析,以进行异配体为中心的在自然界中等电位。显著,环金属化配合物是更容易产生相对于非活化的化合物氧化,2.氧化还原事件已精心DFT审查,揭示HOMO的不稳定在3通过类似于为0.5eV相比2.两个配合物提供丰富已经分析光电子特征是主要(ILCT)-I-1的性质。 (c)2020 elestvier有限公司保留所有权利。

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