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芜菁的化学成分研究
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作者 王证德 平措绕吉 +3 位作者 包环 钱春博 徐俊驹 海梅荣 《昆明医科大学学报》 CAS 2024年第6期51-56,共6页
目的研究芜菁的化学成分,发现其活性成分。方法芜菁经甲醇回流提取、硅胶柱层析、薄层层析、Sephadex LH-20柱层析进行分离纯化,波谱分析(核磁共振氢谱、碳谱)确定结构谱。结果从该药用植物分离得到17个化合物,分别为:(1)1-(4-羟基苯基)... 目的研究芜菁的化学成分,发现其活性成分。方法芜菁经甲醇回流提取、硅胶柱层析、薄层层析、Sephadex LH-20柱层析进行分离纯化,波谱分析(核磁共振氢谱、碳谱)确定结构谱。结果从该药用植物分离得到17个化合物,分别为:(1)1-(4-羟基苯基)-2-丙酮;(2)4-(2-丁氧基乙基)苯酚;(3)1-甲氧基-3-吲哚乙腈;(4)2,2′-oxybis(1,4)-di-tert-butylbenzene;(5)单棕榈酸甘油酯;(6)邻苯二甲酸-1-丁酯-2-异丁酯;(7)邻苯二甲酸二丁酯;(8)1-甲氧基-3-吲哚甲醛;(9)3,7-Dimethyl-n-octan-3α-ol-1-yl-benzoate;(10)邻苯二甲酸二(2-乙基)己酯;(11)β-谷甾醇;(12)TgSSTg;(13)3-吲哚甲醛;(14)咖啡酸;(15)槲皮素;(16)auriculatumA;(17)甘草黄苷。结论1~5、8~9、12~13均为首次从该植物分离得到。以上化合物的发现进一步丰富了芜菁的化学成分组成,为综合开发和利用芜菁植物资源提供前期的实验基础。 展开更多
关键词 芜菁 化学成分 分离鉴定
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Electrocarboxylation of CO_(2) with Organic Substrates:Toward Cathodic Reaction
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作者 He Yao Mei-Yan Wang +6 位作者 Chengguang Yue Bangman Feng Wenhao Ji chunbo qian Shengping Wang Sheng Zhang Xinbin Ma 《Transactions of Tianjin University》 EI CAS 2023年第4期254-274,共21页
Electrocarboxylation of carbon dioxide(CO_(2))using organic substrates has emerged as a promising method for the sustainable synthesis of value-added carboxylic acids due to its renewable energy source and mild reacti... Electrocarboxylation of carbon dioxide(CO_(2))using organic substrates has emerged as a promising method for the sustainable synthesis of value-added carboxylic acids due to its renewable energy source and mild reaction conditions.The reactivity and product selectivity of electrocarboxylation are highly dependent on the cathodic behavior,involving a sequence of electron transfers and chemical reactions.Hence,it is necessary to understand the cathodic reaction mechanisms for optimizing reaction performance and product distribution.In this work,a review of recent advancements in the electrocarboxylation of CO_(2)with organic substrates based on different cathodic reaction pathways is presented to provide a reference for the development of novel methodologies of CO_(2)electrocarboxylation.Herein,cathodic reactions are particularly classified into two categories based on the initial electron carriers(i.e.,CO_(2)radical anion and substrate radical anion).Furthermore,three cathodic pathways(ENE(N),ENED,and EDEN)of substrate radical anion-induced electrocarboxylation are discussed,which differ in their electron transfer sequence,substrate dissociation,and nucleophilic reaction,to highlight their implications on reactivity and product selectivity. 展开更多
关键词 Carbon dioxide ELECTROCATALYSIS CARBOXYLATION Cathodic reaction Carboxylic acids
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