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1)  dibenzoylmethane
二苯甲酰基甲烷
1.
The industrialization design and production of dibenzoylmethane;
二苯甲酰基甲烷的工业化设计及生产
2.
Catalyst were complexed with dibenzoylmethane (DBM) to study catalytic activity.
通过催化剂与二苯甲酰基甲烷(DBM)配位情况对催化剂的性能表征。
3.
The dibenzoylmethane (DBM) is synthesized in one step by reacting acetophenone with methylbenzoate at 135~140℃ for 5h by using xylene as solvent, sodium methoxide as catalyst.
然后经 30 %硫酸酸洗、1 0 %Na2 CO3 溶液碱洗、水洗等后处理操作 ,一步合成了产物二苯甲酰基甲烷
2)  dibenzoylmethane
二苯甲酰甲烷
1.
Synthesis and Photoluminescence Properties of Eu ~(3+)-Dibenzoylmethane-1, 10-Phenanthroline Ternary Complexes Doped with La~(3+),Y~(3+) or Gd~(3+);
稀土掺杂铕(Ⅲ)二苯甲酰甲烷邻菲咯啉三元配合物的合成和荧光性质
2.
Synthesis and Fluorescence Spectra of Micro-crystal of Rare Earths With Dibenzoylmethane;
稀土-二苯甲酰甲烷配合物微晶的合成及荧光光谱
3.
Protective effects of dibenzoylmethane against N,N-dimethylformamide-induced acute hepatotoxicity in mice;
二苯甲酰甲烷对二甲基甲酰胺致小鼠急性肝损伤的保护作用
3)  dibenzoylmethide
二苯甲酰甲烷
1.
Investigation of luminescence of the binary and ternary complexes of europium (Ⅲ) with dibenzoylmethide;
二元、三元二苯甲酰甲烷铕配合物的荧光研究
2.
The Schiff base complexes derived from dibenzoylmethide 2-amin-3-phenyl-propionic acid and ion of transition metal ion were synthesized by the solution method,and its structure were confirmed by modern analysis test method such as ultraviolet,infrared,TG analysis and so on.
利用溶液法合成二苯甲酰甲烷席夫碱过渡金属配合物,用紫外、红外、热重分析方法对目标产物进行结构表征与确认,以过氧化氢残余率为指标,分析催化剂种类、催化剂与过氧化氢配比、反应温度、溶液酸度对催化反应的影响,研究该配合物作为模拟过氧化氢酶,对过氧化氢分解的催化性能。
4)  p'-diamino-dipheny amide)
p'-二氨基二苯甲烷酰胺
1.
p'-diamino-dipheny amide)
以改性后的聚丙烯腈(PAN)超滤膜为基膜、p,p′-二氨基二苯甲烷(DDM)和均苯三甲酰氯(TMC)为单体,采用界面聚合法制备一种新型聚丙烯腈/聚p,p′-二氨基二苯甲烷酰胺复合膜。
5)  acetybenzene
苯甲酰基甲烷
6)  dixylyl methane
二(二甲苯基)甲烷
1.
The catalyst concentrated sulfonic acid xylenesulfonic acid, one of the compared nine catalysts, possesses high catalysis for the synthesis of dixylyl methane.
即在原料配比n(二甲苯)∶n(甲醛)=8∶1,浓硫酸质量分数10025%,反应温度120~140℃和时间233h的条件下,二(二甲苯基)甲烷收率可达773%。
补充资料:二苯甲酰基甲烷
分子式:C15H12O2
分子量:224.26
CAS号:120-46-7

性质:无色斜方形片状结晶。熔点81℃,沸点219℃(2.4kPa)。易溶于氯醇、氯仿,能溶于氢氧化钠溶液,不溶于碳酸钠溶液,极微溶于水。

制备方法:由苄叉乙酰基苯为原料,经溴化、水解得到。

用途:分析试剂,检定二硫化碳和铊,重量测定铀,光度测定U+4,萃取银、铝、钡、铍、钙、镉、钴、铜、铁、镓、汞、锢、镧、镁、锰、镍、铅、钯、钪、钍、钛、锌、锆等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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