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1)  Diphenyl ketone
苯甲酰苯
2)  benxoyl-
苯酰;苯甲酰
3)  benzanilide
苯甲酰苯胺
1.
In this study, the yield of acetanilide and benzanilide synthesis and the rate of reaction were compared between the traditional heat method and microwave inducement.
对比研究了常规加热与微波诱导下合成乙酰苯胺、苯甲酰苯胺的合成产率及反应速率。
2.
The research developments in the luminescence behavior and photophysics of benzanilide and its derivatives were reviewed in terms of the PT/ICT and TICT models that have been proposed to interpret the abnormal long-wavelength fluorescence emission.
评述了苯甲酰苯胺及其衍生物的发光行为和电荷转移 /质子转移光物理模型的研究进展 ,并展望了该类新型分子内电荷转移荧光体在化学及生物分子识别与传感中的潜在应用前
3.
In this paper,the short-time photodissociation dynamics of benzanilide in methanol and acetonitrile solu-tion has been studied by resonance Raman techniqueand quantum chemistry calculations.
采用共振拉曼光谱技术和量子化学计算研究了苯甲酰苯胺在甲醇和乙腈溶液中的短时光化学动力学行为。
4)  benzophenone [英][,benzəufi'nəun]  [美][,bɛnzofɪ'non]
苯甲酰基苯
5)  p-phenylphenacyl
对苯苯甲酰
1.
The planar structures of p-phenylphenacyl and α-phenoxyl acetophenone derivatives
对苯苯甲酰与α-苯氧基-苯甲酰衍生物的平面结构(英文)
6)  benzoyl chloride
苯甲酰氯
1.
Then furoin reacted with acetyl chloride,lauroyl chloride,benzoyl chloride,α-furoyl chloride or 3-α-furylacryloyl chloride to form the corresponding monoester compounds Ⅰ~Ⅴ with pyridine as catalyst and solvent in a water bath of 30~40 ℃.
以糠醛为基础原料,经维生素B1催化合成糠偶姻,再由糠偶姻分别和乙酰氯(Ⅰ),月桂酰氯(Ⅱ),苯甲酰氯(Ⅲ),α-呋喃甲酰氯(Ⅳ),3-α-呋喃烯丙酰氯(Ⅴ)反应,吡啶为催化剂和溶剂,在30-40℃的水浴条件下合成了相对应的糠偶姻单酯类化合物。
2.
4-Phenoxyphenol was synthesized from 4-phenoxy-diphenyl ketone prepared with diphenyl ether and benzoyl chloride as raw material through Beayer-villyger reaction and hydrolyzation.
以二苯醚和苯甲酰氯为原料,经酰基化合成4-苯氧基二苯甲酮,然后再经Beayer-villyger氧化以及碱性水解合成4-苯氧基苯酚。
补充资料:苯甲酰苯
分子式:C13H10O
分子量:182.22
CAS号:119-61-9

性质:白色有光泽的棱形结晶。熔点48.5℃,沸点305.4℃,224.4℃(13.3kPa),141.7℃(0.67kPa),相对密度1.1146(20/4℃),折光率1.6077(19℃)。溶于乙醇、乙醚、氯仿,不溶于水。有甜味,具玫瑰香味。该品主要有两种晶态;α型为棱形晶体,熔点48.1℃,相对密度1.146(20/4℃);β-型为不稳定的单斜晶体,熔点26℃,相对密度1.1076。β型能自行转变为α型。二苯甲酮的醇溶液在光照下不稳定,可生成频哪醇类化合物。

制备方法:可有多种制法。1.由氯苄经与苯缩合,再经硝酸氧化而得。2.由苯经与四氯化碳缩合,再经水解而得。在实验室中,是以三氯化铝作催化剂,使苯与苯甲酰氯反应制备。

用途:二苯甲酮是紫外线吸收剂、有机颜料、医药、香料、杀虫剂的中间体。医药工业中用于生产双环己哌啶、苯甲托品氢溴酸盐,苯海拉明盐酸盐等。该品本身也是苯乙烯聚合抑制剂和香料定香剂。能赋予香精以甜的气息,用在许多香水和皂用香精中。

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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