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1.
Coupling Reaction of α-hydroxyl Ketene Dithioacetals with Carbon Nucleophiles;
α-羟基二硫缩烯酮与碳亲核体的偶联反应
2.
α-EWG Ketenedithioacetal as Carbon Nucleophile in the Application of Synthetic Organic Chemistry;
α-EWG二硫缩烯酮作为碳亲核体在有机合成中的应用
3.
The carbon should be susceptible to attack by a nucleophilic species.
碳容易被亲核试剂进攻。
4.
This article reviews recent progress in nucleophilic reactions of theα- carbon in vinylidene ruthenium complexes. The nucleophiles include alkene, alkyne, alcohol, acid, amine, water, etc.
综述了近几年钌亚乙烯基络合物中间体α碳的亲核反应。亲核试剂包括烯烃、烃、、、、等。
5.
Nuleophilic Addition of α-Carbon Minus Ion and Its Application in Organic Synthesis;
α—碳负离子的亲核加成及在有机合成中的应用
6.
The most general means of generating carban nucleophiles involves removal of a proton from a carbon.
从碳原子上移走一质子,是产生亲核性碳的最普通手段。
7.
nucleophile-assisted unimolecular electrophilic substitution
亲核体协助单分子亲电取代
8.
On Nucleation and Growth Kinetics of Bainite Transformation of Low and Medium Carbon Steels;
中低碳钢贝氏体形核长大动力学研究
9.
It would be expected that carbonium ions are very susceptable to nucleo-philic attack by water.
碳正离子对于水的亲核作用非常灵敏,这是意料中的事.
10.
Synthesis and Characterization of Novel Nitric Oxide Donors Diazeniumdiolates;
新型亲核NO供体的合成及性能研究
11.
Single Nucleotide Polymorphism of Soybean Mapping Populations Parents;
大豆作图群体亲本的单核苷酸多态性
12.
Change of Metabolism of Carbon, Nitrogen, Nucleic Acid on Cabbage Green Plant Vernalization
碳、氮、核酸代谢在甘蓝绿体春化中的变化
13.
MORPHOLOGY AND SUBSTRUCTURE OF JUJUBE-STONE-LIKE MARTENSITE IN ULTRAHIGH CARBON STEEL
超高碳钢中枣核状马氏体形态及亚结构
14.
Preparation and Magnetism Research of Carbon Coated Nano Iron Nanoparticles with Core-shell Structure
核壳型碳铁纳米粉体的制备及磁性能研究
15.
The Chromosome Karyotype Analysis on 155 Cases myasthenia of Patients and Their Parents;
155例肌无力患者及其双亲染色体核型分析
16.
Application of Microwave-assisted Ionic Liquid Method in Nucleophlic Fluorination Reaction
微波辅助离子液体合成法在亲核氟化中的应用
17.
First-principle Studies the Property of the Diluted Magnetic Semiconductors Doped with Ca、Ti、C and the Binuclear Manganese Molecular Magnet
钙、钛和碳掺杂的稀磁半导体及双核锰分子磁体性质的研究
18.
The structures of the intermediates and the target molecule were confirmed by (superscript 1)H NMR and (superscript 13)C NMR spectra in our experiments.
关键中间体及最终化合物的结构经核磁共振氢谱及碳谱确证。