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Highly Efficient Oxidative Cleavage of Carbon-Carbon Double Bond over meso-Tetraphenyl Cobalt Porphyrin Catalyst in the Presence of Molecular Oxygen 被引量:4
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作者 周贤太 纪红兵 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2012年第9期2103-2108,共6页
Highly efficient and selective carbon-carbon double bond aerobic cleavage of olefins catalyzed by metallopor- phyrins was investigated, and carbonyl compounds and epoxide were produced as the main products. CoTPP (co... Highly efficient and selective carbon-carbon double bond aerobic cleavage of olefins catalyzed by metallopor- phyrins was investigated, and carbonyl compounds and epoxide were produced as the main products. CoTPP (co- balt meso-tetraphenyl porphyrin) showed excellent activity for the oxidative cleavage of carbon-carbon double bond by using styrene as model compound, in which the TOF (turnover frequency) and selectivity toward benzaldehyde was obtained with 2×10^4h-1 and 86%,respectively. 展开更多
关键词 oxidative cleavage METALLOPORPHYRINS molecular oxygen carbon-carbon double bond
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基于2-羟基1-萘甲醛缩甘氨酸席夫碱镍配合物的合成及其高效构建C■C键(英文) 被引量:2
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作者 李月强 李春霞 +3 位作者 武福燕 付明月 张军红 黄现强 《聊城大学学报(自然科学版)》 2019年第1期81-87,共7页
合成和表征了一个新颖的2-羟基1-萘甲醛缩甘氨酸席夫碱镍配合物[Ni(Py)3(2-O-C10H5CH■NCH2CO2)]2·3H2O,并通过X-单晶衍射分析、粉末衍射及元素分析确定了其结构.配合物为二核的镍配合物结构,晶体为三斜晶系,P-1空间群,Z=2,a=11.02... 合成和表征了一个新颖的2-羟基1-萘甲醛缩甘氨酸席夫碱镍配合物[Ni(Py)3(2-O-C10H5CH■NCH2CO2)]2·3H2O,并通过X-单晶衍射分析、粉末衍射及元素分析确定了其结构.配合物为二核的镍配合物结构,晶体为三斜晶系,P-1空间群,Z=2,a=11.023(19)?,b=13.30(2)?,c=18.33(3)?,V=2629(8)?3,F(000)=1130,Dc=1.369g/cm3,μ=0.778mm-1,R=0.1102,wR=0.2892.值得注意的是,配合物进一步应用于克脑文格缩合反应中,发现配合物在构建C■C双键的反应中具有有效的非均相催化活性(产率高达99%),并且催化剂可以循环四次后活性没有明显的损失. 展开更多
关键词 席夫碱 2-羟基1-萘甲醛缩甘氨酸 构建 碳碳双键
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Ramberg-Bcklund反应在功能有机分子合成中的应用
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作者 冯建鹏 王小龙 曹小平 《有机化学》 SCIE CAS CSCD 北大核心 2006年第2期158-167,共10页
碳碳双键广泛地存在于功能有机分子中,其构筑在合成化学中具有极其重要的意义.Ramberg-B?cklund反应是构筑碳碳双键的重要方法之一,其关键步骤是砜在碱性条件下进行1,3-消除,得到环状砜,然后重排除去SO2形成双键.该方法具有良好的立体... 碳碳双键广泛地存在于功能有机分子中,其构筑在合成化学中具有极其重要的意义.Ramberg-B?cklund反应是构筑碳碳双键的重要方法之一,其关键步骤是砜在碱性条件下进行1,3-消除,得到环状砜,然后重排除去SO2形成双键.该方法具有良好的立体选择性,底物在不同的反应条件下得到不同构型的产物,因而可以应用于合成许多功能有机分子,具有很好的应用前景.结合自己的研究工作对Ramberg-B?cklund反应在功能有机分子合成中的应用进行了较为系统的总结,也对Ramberg-B?cklund反应的拓展进行了简要介绍. 展开更多
关键词 Ramberg-Backlund反应 构筑碳碳双键 功能有机分子 应用 反应条件 有机分子 分子合成 碳碳双键 立体选择性 合成化学
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提高碾压混凝土层间结合质量的施工方法 被引量:2
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作者 黄杜文 韦东杰 《红水河》 2020年第1期108-110,124,共4页
笔者以万家口子水电站工程碾压混凝土双曲高拱坝为例,分析影响碾压混凝土层间结合质量的原因,包括材料因素、机械因素、方法因素、环境因素等,并针对主要因素采取有效措施,保证碾压混凝土层间结合质量。
关键词 碾压混凝土 双曲拱坝 层间结合 施工方法
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Comprehensive Characterization of Phospholipid Isomers in Human Platelets
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作者 Wenpeng Zhang Bing Shang Yu Xia 《Journal of Analysis and Testing》 EI 2020年第3期210-216,共7页
Lipids play an important role in platelet integrity and function.However,most of lipid molecular compositions in platelets still remain unknown,especially for phospholipids.In this work,we characterized detailed struc... Lipids play an important role in platelet integrity and function.However,most of lipid molecular compositions in platelets still remain unknown,especially for phospholipids.In this work,we characterized detailed structures of different classes of phospholipids in human platelets.Using a flow microreactor,the acetone Paternò-Büchi reaction was introduced for online derivatization of carbon-carbon double bond(C=C)of lipids right after separation by liquid chromatography(LC).Tandem mass spectrometry(MS/MS)methods were developed for multi-level structural identification of phospholipids,including head group,chain composition,and C=C locations in the fatty acyl/alkyl chains.After optimization of the workflow,a total of 110 molecular species of phospholipids were identified in the human platelet samples,including many C=C location isomers.At lipid class level,phosphatidylserine was found more abundant in the platelet samples than that of the plasma samples;at isomer level,the relative ratio of C18:1(Δ9)vs C18:1(Δ11)also increased in platelet samples comparing with that of the plasma samples.The detailed structural information of phospholipids and their C=C isomers ratios would be useful for investigation of potential functions of human platelets potentially associated with phospholipid isomers. 展开更多
关键词 PLATELET PHOSPHOLIPID carbon-carbon double bond The Paternò-Büchi reaction
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