详细信息
文献类型:期刊文献
中文题名:由4-联苯甲酰胺合成4-联苯腈
英文题名:Preparation of Biphenyl-4-carbonitrile from Biphenyl-4-carboxamide
作者:姜钦杰[1];王成云[1];何庆[1];沈永嘉[1]
机构:[1]华东理工大学精细化工研究所结构可控先进功能材料及其制备教育部重点实验室,上海200237
年份:2009
卷号:23
期号:1
起止页码:122
中文期刊名:高校化学工程学报
外文期刊名:Journal of Chemical Engineering of Chinese Universities
收录:CSTPCD;;EI(收录号:20091211965901);Scopus;北大核心:【北大核心2008】;CSCD:【CSCD2011_2012】;
语种:中文
中文关键词:4-联苯甲酰胺;4-联苯腈;氯化亚砜;DMF;脱水反应
外文关键词:biphenyl-4-carboxamide; biphenyl-4-carbonitrile; thionyl chloride; DMF; dehydrate reaction
摘要:研究了在二氯乙烷中4-联苯甲酰胺合成4-联苯腈的脱水工艺,考察了氯化亚砜用量和二甲基甲酰胺(DMF)用量等因素对该反应的影响,由此获得了较佳的反应参数:DMF的用量为4-联苯甲酰胺摩尔数的1/2,氯化亚砜为4-联苯甲酰胺摩尔数的4倍,反应时间5h,反应温度为80°C,如此可以75.8%的收率得到4-联苯腈。在氨气氛围中,不使用任何脱水剂,4-联苯甲酰胺可在高温(240°C)时转化成4-联苯腈,通过减压蒸馏(2~3mmHg)可以70%收率得到产物。在此反应中,温度是关键的影响因素,当温度低于220°C时,反应进展缓慢;温度高于240°C时,对提高反应速度的意义不大。
Biphenyl-4-carbonitrile can be obtained from biphenyl-4-carboxamide by dehydrating reaction in dimethylformamide (DMF) by using thionyl chloride as dehydrating agent at low temperature (5℃); But DMF is difficult to be recovered because it is soluble in water, so the above reaction is not so friendly to the environment. However biphenyl-4-carbonitrile could be obtained from biphenyl-4-carboxamide in dichloroethane by using thionyl chloride as dehydrating agent. The factors affecting the reaction was investaged, and the optimal reaction parameters were obtained as follows: the molar ratios of DMF to biphenyl-4-carboxamide and thionyl chloride to biphenyl-4-carboxamide are 1:2 and 4:1, respectively, the reaction time and temperature are 5 h and 80℃, respectively. Under above reaction conditions, the biphenyl-4-carbonitrile yield of 75.8% could be obtained. Meanwhile the biphenyl-4-carboxamid could also be converted to biphenyl-4-carbonitrile at high temperature in ammonia atmosphere without any dehydrating agent and after distillation under reduced pressure (2-3 mmHg), the biphenyl-4-carbonitrile yield of 70% could obtained. For above process, the temperature is the key factor, when the temperature is lower than 220℃, the reaction rate is very low; however when the temperature is higher than 240℃, the acceleration effect of the temperature on the reaction rate is not so obviously.
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