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含喹啉衍生的NNS供体配体的镍配合物作为苯胺与醇进行N-烷基化反应的催化活化剂

Nickel Complexes Bearing Quinoline Derived NNS Donor Ligands as Catalytic Activators for N-Alkylation of Anilines with Alcohols.

作者信息

Tanwar Deepika, Mahala Suman, Ahluwalia Deepali, Bhuvanesh Nattamai, Joshi Hemant, Kumar Umesh

机构信息

Catalysis and Bioinorganic Research Lab, Department of Chemistry, Deshbandhu College, University of Delhi, New Delhi, 110019, India.

Department of Chemistry, University of Delhi, New Delhi, 110007, India.

出版信息

Chem Asian J. 2024 Oct 1;19(19):e202400557. doi: 10.1002/asia.202400557. Epub 2024 Sep 11.

Abstract

Herein, we have reported a new series of NNS-donor ligands coordinated Ni(II) complexes and utilized them as catalytic activator to synthesize N-alkylated amines and 1,2-disubstituted benzimidazoles. The reaction of thiophenol/4-chlorothiophenol/4-methylthiophenol/4-methoxythiophenol with 2-bromo-N-quinolin-8-yl-acetamide in presence of sodium hydroxide in ethanol at 80 °C gave [CHN-NH-C(O)-CH-S-Ar] [Ar=CH (L1); CHCl-4 (L2); CHMe-4 (L3) and CH-OMe-4 (L4)], respectively. The corresponding reaction of L1-L4 with Ni(OAc) in methanol at 80 °C for 3 hours resulted in octahedral nickel complexes [(L1-H)Ni] (C1), [(L2-H)Ni] (C2), [(L3-H)Ni] (C3), and [(L4-H)Ni] (C4), respectively. All compounds have been characterized by micro and spectroscopic analysis. The molecular structure of complexes C1-C3 has also been determined by single crystal X-ray diffraction data. The utility of complexes C1-C4 were evaluated for the N-alkylation of aniline with benzyl alcohols, and for 1,2-disubstituted benzimidazoles synthesis. The obtained results indicate that complex C1 showed better catalytic activity in both N-alkylation of amines with benzyl alcohols [catalyst loading: 2.0 mol %; Yield up to 92 %], and for 1,2-disubstituted benzimidazoles derivatives [catalyst loading: 2.0 mol %; Yield up to 94 %)]. The mechanistic studies suggested that the reaction works through hydrogen borrowing from benzyl alcohol and its subsequent utilization for in situ reduction of imine. The experimentally observed catalytic reactivity patterns of complexes C1-C4 have found in good agreement with the HOMO-LUMO energy gaps obtained by DFT analysis of corresponding complexes.

摘要

在此,我们报道了一系列新的由NNS供体配体配位的Ni(II)配合物,并将它们用作催化活化剂来合成N-烷基化胺和1,2-二取代苯并咪唑。在80℃的乙醇中,硫酚/4-氯硫酚/4-甲基硫酚/4-甲氧基硫酚与2-溴-N-喹啉-8-基乙酰胺在氢氧化钠存在下反应,分别得到了[CHN-NH-C(O)-CH-S-Ar] [Ar = CH (L1); CHCl-4 (L2); CHMe-4 (L3) 和 CH-OMe-4 (L4)]。L1-L4与Ni(OAc)在80℃的甲醇中反应3小时,分别得到八面体镍配合物[(L1-H)Ni] (C1)、[(L2-H)Ni] (C2)、[(L3-H)Ni] (C3) 和 [(L4-H)Ni] (C4)。所有化合物均通过微量和光谱分析进行了表征。配合物C1-C3的分子结构也通过单晶X射线衍射数据确定。评估了配合物C1-C4在苯胺与苄醇的N-烷基化反应以及1,2-二取代苯并咪唑合成中的效用。所得结果表明,配合物C1在胺与苄醇的N-烷基化反应[催化剂用量:2.0 mol%;产率高达92%]和1,2-二取代苯并咪唑衍生物[催化剂用量:2.0 mol%;产率高达94%]中均表现出较好的催化活性。机理研究表明,该反应通过从苄醇中借氢并随后将其用于原位还原亚胺来进行。配合物C1-C4实验观察到的催化反应模式与通过相应配合物的DFT分析获得的HOMO-LUMO能隙高度吻合。

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