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水性涂料用氟树脂的初步研究 被引量:6
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作者 王猛 苗国祥 《涂料技术》 2001年第3期5-6,共2页
本文用三氟氯乙烯和乙基乙烯基醚进行乳液共聚合的方法,对水性涂料用氟树脂的共聚合进行了研究,通过调整两种单体不同的摩尔比,研究了分散剂、反应温度、反应时间等因素对聚合反应的影响,并对三氟氯乙烯和乙基乙烯基醚两种单体的竞... 本文用三氟氯乙烯和乙基乙烯基醚进行乳液共聚合的方法,对水性涂料用氟树脂的共聚合进行了研究,通过调整两种单体不同的摩尔比,研究了分散剂、反应温度、反应时间等因素对聚合反应的影响,并对三氟氯乙烯和乙基乙烯基醚两种单体的竞聚率作了初步的研究。 展开更多
关键词 水性涂料 氟树脂 三氟氯乙烯 乙基乙烯基醚 乳液共聚合
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具有良好附着力,低透射率和低折射率的含氟共聚物
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作者 徐玲 《化工生产与技术》 CAS 2006年第2期29-29,共1页
在230°时熔体流动质量速率为0.1~100g/10min的含氟聚合物中包含有不饱和氟单体和不饱和羧酸或盐或烷基醚。含氟共聚物的例子包括四氟乙烯,全氟乙基乙烯基醚或含甲基丙烯酸或α-三氟甲基丙烯酸的偏二氟乙烯共聚物。这样,pH维持... 在230°时熔体流动质量速率为0.1~100g/10min的含氟聚合物中包含有不饱和氟单体和不饱和羧酸或盐或烷基醚。含氟共聚物的例子包括四氟乙烯,全氟乙基乙烯基醚或含甲基丙烯酸或α-三氟甲基丙烯酸的偏二氟乙烯共聚物。这样,pH维持在7-10之间,0.1kg甲基丙烯酸,11.0kgPTEE,17.3b全氟乙基乙烯基醚和2.0kg偏二氟乙烯被聚合,得到一种共聚物,它的邵氏D硬度为57,熔点为180℃,熔体流动质量速率为16g/10min,在650nm时低透射率为92%。在589nm时折射率为1.35,在各种衬层中具有良好的熔体模压性能和附着力。 展开更多
关键词 含氟共聚物 低折射率 附着力 透射率 乙基乙烯基醚 甲基丙烯酸 不饱和羧酸 含氟聚合物 偏二氟乙烯 乙烯共聚物
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Analysis of Potential Energy Surface for Butanone Isomerization 被引量:3
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作者 Xue Yang Bing Yan +3 位作者 Hai-feng Xu Rui-han Zhu Mei-xia Zhang Da-jun Ding 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2013年第5期519-525,I0003,共8页
The potential energy surfaces for butanone isomerization have been investigated by density function theory calculation. Six main reaction pathways are confirmed using the intrinsic reaction coordinate method, and the ... The potential energy surfaces for butanone isomerization have been investigated by density function theory calculation. Six main reaction pathways are confirmed using the intrinsic reaction coordinate method, and the corresponding isomerization products are 1-buten-2-ol, 2-buten-2-ol, butanal or 1-buten-l-ol, methyl 1-propenyl ether, methyl allyl ether, and ethyl vinyl ether, respectively. Among them, there are three pathways through butylene oxide, indicating butylene oxide is an important intermediate product during butanone isomer ization. The calculated vertical ionization energies of the reactant and its products are in a good agreement with the experimental values available. From the consideration for the relative energies Of transition states and the number of high-energy barriers we infer that the reaction pathway butanone-*l-buten-2-ol---2-buten-2-oi is the most competitive. The obtained results are informative for future studies on isomerization of ketone molecules. 展开更多
关键词 BUTANONE ISOMERIZATION Density function theory Potential energy surface Vertical ionization energy
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Polymers with complicated architectures constructed from the versatile, functional monomer 1-ethoxyethyl glycidyl ether
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作者 Jiaxing Zhang Guowei Wang 《Science China Chemistry》 SCIE EI CAS CSCD 2015年第11期1674-1694,共21页
Because glycidyl(Gly) contains an epoxy and an active hydroxyl group, the Gly unit is difficult to introduce into certain polymeric chains in a controlled manner and usually yields hyperbranched polyglycidyl. Alternat... Because glycidyl(Gly) contains an epoxy and an active hydroxyl group, the Gly unit is difficult to introduce into certain polymeric chains in a controlled manner and usually yields hyperbranched polyglycidyl. Alternatively, the monomer 1-ethoxyethyl glycidyl ether(EEGE), derived from Gly and ethyl vinyl ether, has shown potential for application in polymer chemistry, and homopolymerization of this monomer directly produces linear poly(1-ethoxyethyl glycidyl ether) and further yields linear polyglycidyl. In this review, the initiation system of the EEGE monomer is first discussed in terms of chain transfer to monomers in ring-opening polymerization of epoxides with substituent groups. Then, random copolymerization of EEGE with other epoxides is considered. In addition, because the EEGE units on polymers can be transferred to Gly units and further used to construct copolymers with complicated architectures, the applications of EEGE monomers to block, graft, and hyperbranched copolymers are reviewed. Finally, the synthesis of main chain and terminal functional polyethers by transforming the hydroxyl groups at the polymer end or on the main chain into certain functional groups are also discussed. Chemistry based on EEGE has been proved to be an efficient, versatile route to constructing copolymers containing Gly units and ultimately yielding the target properties and applications. 展开更多
关键词 linear polyglycidyl (LPG) poly(1-ethoxyethyl glycidyl ether) (PEEGE) block polymer graft polymer hyper-branched polymer
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