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1)  degrading-dehydroabietylamine
脱氢枞酸降解胺
2)  dehydroabietylamine
脱氢枞胺
1.
Amine Addition Reaction of C_(60) with Dehydroabietylamine Catalyzed by AlCl_3;
AlCl_3催化下C_(60)与脱氢枞胺的胺加成反应
2.
Additive reaction of fullerene and dehydroabietylamine under microwave irradiation;
微波辐射下[60]富勒烯与脱氢枞胺的加成反应
3.
Research and Application Progress on Dehydroabietylamine and its Derivatives;
脱氢枞胺及其衍生物的研究与应用进展
3)  dehydroabietic acid
脱氢枞酸
1.
Isolation of dehydroabietic acid by reaction-crystallization coupled with ultrasound wave;
超声波协同反应-结晶耦合单离脱氢枞酸
2.
Preparation of high purity dehydroabietic acid by fractional acidification;
逐级酸化法制备高纯度脱氢枞酸
3.
Research progress in structural modification and biologic activities of dehydroabietic acid;
脱氢枞酸的结构修饰及生物活性研究进展
4)  abietylamine
脱氢松香酸降解胺
1.
Two novel chiral Schiff base - Cu complexes were synthsized from the reaction of Cu(Ac)2 with chiral Schiff base which were obtained by the reaction of salicylaldehyde with degrad - dehydroabietylamine and industrial abietylamine .
利用合成的脱氢松香酸降解胺和工业生产的松香胺和水杨醛反应,制得手性Schiff碱,再与醋酸铜反应,合成得两种新型的手性Schiff碱—铜配合物,并对其进行了元素分析、红外光谱、紫外光谱表征。
5)  Degrading dehydroabietylamine
右旋脱氢松香酸降解胺
6)  Dehydroabietate
脱氢枞酸盐
1.
Study on Modification of Transparent PP by Dehydroabietate;
脱氢枞酸盐透明改性聚丙烯研究
补充资料:脱氢枞胺
分子式:
CAS号:

性质:又称脱氢枞胺。无色或淡黄色。熔点44~45℃。折射率nD201.5480。以松香酸在高温下与气态氨作用,在催化剂存在下脱水转变为松香腈(或称脱氢枞腈),再在压力下进行加氢还原反应制得。可用作有机颜料的表面改性剂。

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