Addition reaction of 1,6-diiodoperfluorohexane with ethylene: Process optimization and kinetic study

IF 1.9 4区 化学 Q3 CHEMISTRY, INORGANIC & NUCLEAR
Zihan Ai, Baohe Wang, Zhaobang Zhang, Bangxing Yin, Jing Zhu, Jing Ma
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引用次数: 0

Abstract

The fluorine-containing compound with symmetrical structure (I-C2H4-(CF2)n-C2H4-I) is a widely used the intermediate of fluorine-containing copolymer having various applications in the organic fluorine chemical industry. Herein, the addition reaction of 1,6-diiodoperfluorohexane (I-C6F12-I) with ethylene was studied at different temperatures (130 to 170 °C), reaction time (4 to 12 h), solvents (acetonitrile, DMF, Py, n-hexane) and initiators (AIBN, DTBP, CuI, CuCl). The yield of the product (I-C2H4C6F12C2H4-I) was up to 73 % under optimal reaction conditions (150 °C, 10 h, CuI, acetonitrile). The kinetic equation of the reaction was derived through further studies on the reaction kinetics. The addition reaction is a consecutive reaction, the reaction order and the activation energy of the first step (I-C6F12-I to I-C6F12C2H4-I) are 1.131 and 56.53 kJ mol-1, and the reaction order and the activation energy of the second step (I-C6F12C2H4-I to I-C2H4C6F12C2H4-I) are 0.479 and 49.81 kJ mol-1. These are important results that allows for further process intensification and designing of reactor.

Abstract Image

1,6-二碘全氟己烷与乙烯加成反应:工艺优化及动力学研究
对称结构的含氟化合物(I-C2H4-(CF2)n-C2H4-I)是一种广泛使用的含氟共聚物中间体,在有机氟化工中有多种应用。本文研究了1,6-二碘过氟己烷(I-C6F12-I)与乙烯在不同温度(130 ~ 170℃)、反应时间(4 ~ 12 h)、溶剂(乙腈、DMF、Py、正己烷)和引发剂(AIBN、DTBP、CuI、CuCl)下的加成反应。在最佳反应条件(150℃,10 h,崔,乙腈)下,产物(I-C2H4C6F12C2H4-I)的收率可达73%。通过对反应动力学的进一步研究,导出了反应的动力学方程。加成反应为连续反应,第一步(I-C6F12-I→I-C6F12C2H4-I)的反应阶数和活化能分别为1.131和56.53 kJ mol-1,第二步(I-C6F12C2H4-I→I-C2H4C6F12C2H4-I)的反应阶数和活化能分别为0.479和49.81 kJ mol-1。这些结果对进一步的工艺强化和反应器的设计具有重要意义。
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来源期刊
Journal of Fluorine Chemistry
Journal of Fluorine Chemistry 化学-无机化学与核化学
CiteScore
3.80
自引率
10.50%
发文量
99
审稿时长
33 days
期刊介绍: The Journal of Fluorine Chemistry contains reviews, original papers and short communications. The journal covers all aspects of pure and applied research on the chemistry as well as on the applications of fluorine, and of compounds or materials where fluorine exercises significant effects. This can include all chemistry research areas (inorganic, organic, organometallic, macromolecular and physical chemistry) but also includes papers on biological/biochemical related aspects of Fluorine chemistry as well as medicinal, agrochemical and pharmacological research. The Journal of Fluorine Chemistry also publishes environmental and industrial papers dealing with aspects of Fluorine chemistry on energy and material sciences. Preparative and physico-chemical investigations as well as theoretical, structural and mechanistic aspects are covered. The Journal, however, does not accept work of purely routine nature. For reviews and special issues on particular topics of fluorine chemistry or from selected symposia, please contact the Regional Editors for further details.
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