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首页> 外文期刊>Journal of the Iranian Chemical Society >Direct preparation of oximes and Schiff bases by oxidation of primary benzylic or allylic alcohols in the presence of primary amines using Mn(III) complex of polysalicylaldehyde as an efficient and selective heterogeneous catalyst by molecular oxygen
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Direct preparation of oximes and Schiff bases by oxidation of primary benzylic or allylic alcohols in the presence of primary amines using Mn(III) complex of polysalicylaldehyde as an efficient and selective heterogeneous catalyst by molecular oxygen

机译:通过使用Mn(III)络合物在使用聚钠丙基的Mn(III)络合物作为通过分子氧的有效和选择性的异质催化剂,通过氧化原发性苄基或烯丙基醇的氧化肟或苯吡咯碱的直接制备。通过分子氧

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摘要

The present work introduced the new strategy for direct preparation of Schiff base as well as oxime compounds through oxidation of primary benzylic or allylic alcohols in the presence of amines by complexation of Mn(III) to a polymeric Schiff base ligand based on polysalicylaldehyde (PSA-Schiff base-Mn(III) complex). As a new environmentally benign protocol, manganese heterogeneous polymeric catalytic system demonstrated promising oxidation of alcohols in ethanol using molecular oxygen. PSA was synthesized through polycondensation reaction of 2-hydroxy-5-chloromethyl-benzaldehyde and then treated with 2-aminophenol to form polymeric ligand. Average molecular weight of PSA was studied by an analytical method as well as GPC analysis. Formation of the catalyst was characterized step by step by FTIR, UV-Vis, H-1 NMR, TGA, CHN and EDX analyses. Loading amounts of metal ions as well as leaching amount of the catalysis were studied by ICP-OES instrument. The catalyst shows up to high yields for oxidation of primary and secondary primary benzylic or allylic alcohols to carbonyl compounds, especially direct imine formation in a mild, inexpensive and efficient method which can be successfully recovered from the reaction mixture and reused for several times without any remarkable reactivity loss. Effect of solvent, temperature, catalyst amount and oxygen donors along with some blank experiments to elucidation of catalyst activity was evaluated in this work. Also chemoselectivity behavior of the catalyst was investigated with some combinations.
机译:目前的作品引入了通过在基于聚钠丙基的聚合物Schiff碱配体(PSA-)的聚合物Schiff碱配体(PSA- - Schiff Base-Mn(III)复合物)。作为一种新的环境良性方案,锰的异质聚合物催化系统使用分子氧在乙醇中氧化醇氧化。通过2-羟基-5-氯甲基 - 苯甲醛的缩聚反应合成PSA,然后用2-氨基苯酚处理以形成聚合物配体。通过分析方法以及GPC分析研究了PSA的平均分子量。催化剂的形成逐步通过FTIR,UV-Vis,H-1 NMR,TGA,CHN和EDX分析表征。通过ICP-OES仪器研究了催化的金属离子以及浸出量的浸出量。催化剂显示出高产率为氧化初级苄基或烯丙基醇和羰基化合物的高产率,特别是在温和,廉价且有效的方法中直接的亚胺形成,其可以从反应混合物中成功地回收并重复使用几次没有任何方法显着的反应性损失。在这项工作中,评价溶剂,温度,催化剂量和氧供应器以及一些空白实验中的一些空白实验。还通过一些组合研究了催化剂的化学选择性行为。

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