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α-溴汞化羰基化合物与N-亚硝基乙酰芳胺的反应
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作者 胡宏纹 崔文革 李小华 《化学研究与应用》 CAS CSCD 1992年第1期25-28,共4页
用作芳基自由基来源的N-亚硝基乙酰芳胺与α-溴汞化羰基化合物一起加热时,生成溴化芳基汞,副产物及ESR研究说明反应为自由基过程.
关键词 α溴汞化羰基化合物 N-亚硝基乙酰 自由基反应
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一种硝基二芳胺的制备过程
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作者 经再英 《南化科技信息》 1995年第4期7-9,共3页
关键词 硝基 硝基芳胺 制备
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芳胺的高化学选择性硝化
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作者 施振华 《中国医药工业杂志》 CAS CSCD 北大核心 2008年第2期135-135,共1页
芳香胺在乙腈中用Ph3P/Br2/AgNO3体系进行硝化反应,得硝基芳胺。反应在室温进行,时间短(5min),转化率100%;对多官能团芳胺的硝化有化学选择性。13例收率或异构体相加收率90%以上。
关键词 选择性硝化 化学选择性 硝基芳胺 硝化反应 AGNO3 多官能团 BR2
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三氯化钛促进的酮与硝基化合物的还原环化反应
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作者 周龙虎 戴桂元 +1 位作者 史达清 陈伟兴 《有机化学》 SCIE CAS CSCD 北大核心 1995年第2期209-211,共3页
本文研究了三氯化钛水溶液作用下,邻硝基苯胺与1,2-二酮在碱性介质中分子间的成环反应,提供了一个方便地合成取代喹喔啉类化合物的方法。
关键词 三氯化钛 还原 环化 硝基芳胺 二酮
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Intermediate formation enabled regioselective access to amide in the Pd-catalyzed reductive aminocarbonylation of olefin with nitroarene 被引量:2
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作者 Li Yang Lijun Shi +1 位作者 Chungu Xia Fuwei Li 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第7期1152-1160,共9页
An efficient route for the palladium-catalyzed reductive aminocarbonylation of olefins with nitroarenes was developed using carbon monoxide(CO)as both reductant and carbonyl source,which enables facile access to amide... An efficient route for the palladium-catalyzed reductive aminocarbonylation of olefins with nitroarenes was developed using carbon monoxide(CO)as both reductant and carbonyl source,which enables facile access to amides with excellent regioselectivity and broad substrate scope.It is found that the counter anions of the Pd catalyst precursors significantly affect the reaction chemoselectivity and amide regioselectivity.Branched amides were mainly obtained with K2PdCl4 as the metal catalyst,and phosphine ligands had no influence on the regioselectivity but affected the catalytic reactivity.However,phosphine ligands had significant effects on aminocarbonylation regioselectivity when Pd(CH3CN)4(OTf)2 was used;monodentate phosphines tended to form branched amides,and bidentate phosphines mainly formed linear amides.Trapping experiments,primary kinetic studies,and control reactions with all possible N-species reduced from nitroarene indicated that the catalytic synthesis of branched and linear amides produced nitrene(further converted to enamide)and aniline,respectively,different from the previous ligand-controlled regioselective synthesis of amides via the aminocarbonylation of olefins with amines.Furthermore,the proposed synthesis route could be applied in the synthesis of gram-scale propanil under mild conditions. 展开更多
关键词 NITROARENES AMIDES N-intermediate AMINOCARBONYLATION Regioselectivity
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Catalytic Hydrogenation of Aromatic Compounds in the Liquid Phase
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作者 Milan Králik Mária Turáková +1 位作者 Ivan Macák Stefan Wenchich 《Journal of Chemistry and Chemical Engineering》 2012年第12期1074-1082,共9页
Peculiarities of a liquid phase hydrogenation, namely lower diffusivity of components influencing the reaction rate and deactivation of catalysts by leaching, are discussed. A focus is on hydrogenation of aromatic com... Peculiarities of a liquid phase hydrogenation, namely lower diffusivity of components influencing the reaction rate and deactivation of catalysts by leaching, are discussed. A focus is on hydrogenation of aromatic compounds, whereas the following processes are evaluated: (l) partial hydrogenation of benzene to cyclohexene; (2) hydrogenation of aniline; (3) hydrogenation of diphenylamine; (4) preparation of aniline from nitrobenzene; (5) hydrogenation of chloronitrobenzenes; (6) hydrogenation of 4-nitrosodiphenylamine and 4-nitrodiphenylamine mixture. Processes (1) and (6) are typically carried out in the water-oil system. Generally, this type of system allows reaching a higher selectivity to desired products. In the case of hydrogenation of 4-nitrosodiphenylamine and 4-nitrodiphenylamine mixture, the water phase extracts a water soluble catalyst; which is recycled and used for condensation of aniline and nitrobenzene. Problems of reaction kinetics, as well as catalysts deactivation are here discussed. 展开更多
关键词 HYDROGENATION NITROAROMATICS ANILINE DICYCLOHEXYLAMINE 4-AMINODIPHENYLAMINE slurry reactors.
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The thiamine-dependent enzyme of the vitamin K biosynthesis catalyzes reductive C-N bond ligation between nitroarenes and α-ketoacids
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《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2013年第3期312-320,共9页
The thiamine-dependent enzyme (1R, 2S, 5S, 6S)-2-succinyl-5-enolpyruvyl-6-hydroxyl-3-cyclohexene-l-carboxylate (SEPHCHC) synthase, also known as MenD, catalyzes a Stetter-like reaction in the biosynthesis of vitam... The thiamine-dependent enzyme (1R, 2S, 5S, 6S)-2-succinyl-5-enolpyruvyl-6-hydroxyl-3-cyclohexene-l-carboxylate (SEPHCHC) synthase, also known as MenD, catalyzes a Stetter-like reaction in the biosynthesis of vitamin K. It is found to catalyze a novel reductive C-N bond ligation reaction between nitroarenes and et-ketoacids to form N-hydroxamates. This reaction likely pro- ceeds through an enzyme-mediated, slow two-electron reduction of the nitroalkanes to form a nitroso intermediate, which serves as the electrophilic acceptor of the ketoacid-derived acyl anion. The involvement of the nitroso intermediate is support- ed by the fact that similar N-hydroxamates are readily formed at a much higher rate when nitroso compounds replace the nitro substrates in the chemoenzymatic reactions. These results demonstrate that the thiamine-dependent enzyme is able to catalyze novel, nonnative reactions that may find new chemoenzymatic applications. 展开更多
关键词 chemoenzymatic synthesis N-hydroxamates thiamine-dependent enzymes SEPHCHC synthase vitamin K biosynthesis
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