1) amidocarbonylation
酰胺碳基化
2) amide
酰胺
1.
Developments of mixed pyrrole-amide based anion receptors;
基于吡咯-酰胺混合单元的阴离子受体的研究进展
2.
Synthesis and Herbicidal Activity of N-(4,6-disubstituted pyrimidin-2-yl)-2-(2,4-dichlorophenoxy) propionamide;
N-(4,6-二取代嘧啶-2-基)-2-(2,4-二氯苯氧基)丙酰胺衍生物的合成及除草活性
3.
Synthesis of 1-(2,6-Dichloro-4-trifluoromethyI)phenyl-3-cyano-5-aminopyrazole and its amides and imide;
1-(2,6-二氯-4-三氟甲基苯基)-3-氰基-5-氨基吡唑及其酰胺、二酰亚胺的合成
3) acidamide
酰胺
1.
Synthesis and analyse of perfluoroheptyl-N-di(ethylamino) acidamide;
全氟庚基-N-二(氨乙基)酰胺的合成与表征
2.
The organic nucleating agents include sorbitol, carboxylic acid and its metallic salt, organic phosphate and acidamide.
介绍了二苄叉山梨醇衍生物类、羧酸及其金属盐、有机磷酸金属盐、酰胺类成核剂的合成方法及国内外发展水平,讨论了有机类成核剂对聚烯烃制品的改性效果。
4) acylamide
酰胺
1.
Oxidized wax is modified by amidation reaction to produce acylamide with better physical and chemical properties.
氧化蜡经过胺改性可以得到具有更佳物化性能的脂肪酸酰胺。
2.
By combining 2 chloropyridine, 1,3,4 thiadiazole and acylamide, three toxophoric moieties seven 2 [ N (1 methoxycarbonyl)ethyl N acyl]amino 5 [(2 chloropyrid) 4 yl] 1,3,4 thiadiazoles(8) were synthesized in seven steps.
另外 ,酰胺作为致毒基存在于许多生物活性物质中 ,特别在除草剂中具有重要地位 [5,6 ]。
3.
Paraffin wax is the research object in the thesis and is modified by oxidization, amidation and emulsification to produce a series of modified waxes including acylamide wax unfound home and abroad that can be applied in practical industries.
本文以石蜡为研究对象,通过对石蜡进行改性如氧化、酰胺化和乳化,得到一系列改性蜡,包括在国内外未见报道的酰胺化改性蜡,应用于实际工业生产中。
5) amides
酰胺
1.
One-pot syntheses of amides from nitroarenes and esters;
硝基化合物和酯一锅法制备酰胺
2.
Determination of Amides in Chinese Prickly Ash Oil by UV-spectrometer;
紫外分光光度计法测花椒油中酰胺类物质含量
3.
A New Synthesis of N, N - Dimethylamides from Carboxylic acids;
羧酸直接酰胺化的一个新方法
6) amidⅠ
酰胺Ⅰ
参考词条
补充资料:α-[[[(2-呋喃甲酰)胺基]碳酰基]胺基]苯乙酸
分子式 C14H12N2O5
分子量 288.26
CAS号 89307-25-5
α-(2-呋喃甲酰)脲基苯乙酸为白色的结晶粉末,不溶于水和冷的苯。熔点205~208℃。
用途;α-(2-呋喃甲酰)脲基苯乙酸主要用于合成呋脲苄青霉素。
分子量 288.26
CAS号 89307-25-5
α-(2-呋喃甲酰)脲基苯乙酸为白色的结晶粉末,不溶于水和冷的苯。熔点205~208℃。
用途;α-(2-呋喃甲酰)脲基苯乙酸主要用于合成呋脲苄青霉素。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。