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Synthesis of fluorocarbon-vinyl acetate copolymers in supercritical carbon dioxide: Insight into bulk properties

机译:超临界二氧化碳中氟碳-乙酸乙烯酯共聚物的合成:对本体性质的认识

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Tetrafluoroethylene (TFE), chlorotrifluoroethylene (CTFE), and vinylidene fluoride (VDF) were copolymerized with vinyl acetate (VAc) in supercritical fluid CO2 by a free radical mechanism and without the use of a surfactant, A series of copolymers were synthesized with yields as high as 83% for TFE-VAc, 91% for CTFE-VAc, and 70% for VDF-VAc copolymers. Their weight-average molar masses, relative to polystyrene, were between 120 and 290 kg mol(-1), and polydispersity was between 1.6 and 2.4. A range of compositions was prepared with the amount of fluorocarbon in the copolymer varying from 13 to 84 mol 17c, as determined by elemental analysis. Monomer reactivity ratios were estimated using the error-in-variable method to be r(CTFE) = 0.014 +/- 0.05, r(VAc) = 0.44 +/- 0.03; r(TFE) = -0.009 +/- 0.06, r(VAc) = 0.95 +/- 0.08; and r(VDF) = -0.4 +/- 0.04, r(VAC) = 1.67 +/- 0.6. Proton NMR was used to estimate copolymer composition, based on triad sequences. These data, together with the reactivity ratio data, indicate that the fluorocarbons cross-propagate with VAc and that VAc propagates randomly. All samples were characterized by DSC for T-g with P(CTFE-co-VAc) having a Tg between 42 and 53 degreesC, P(TFE-co-VAc) between 34 and 41 degreesC, and P(VDF-co-VAc) between 20 and 33 degreesC. Hydrolysis of vinyl acetate to vinyl alcohol (VA) in P(TFE-co-VAc) yielded terpolymers, P(TFE-co-VAc-co-VA), with >80% of VAc hydrolyzed to VA, thereby providing a reactive functional group for further modification. Interestingly, only a small decrease in molar mass was observed after the hydrolysis of vinyl acetate to vinyl alcohol, reflecting the loss of acetic acid and suggesting that these polymers are linear. The results presented herein are particularly interesting because no surfactant (or dispersion agent) was required for apparent solubility in CO2. The fluoropolymers prepared herein may find utility in coatings or paint applications. [References: 35]
机译:四氟乙烯(TFE),氯三氟乙烯(CTFE)和偏二氟乙烯(VDF)通过自由基机理在超临界流体CO2中与乙酸乙烯酯(VAc)进行共聚,无需使用表面活性剂,合成了一系列共聚物,其收率为TFE-VAc高达83%,CTFE-VAc高达91%,VDF-VAc共聚物高达70%。相对于聚苯乙烯,它们的重均摩尔质量为120至290 kg mol(-1),多分散度为1.6至2.4。通过元素分析确定,制备了一系列组合物,其中共聚物中的碳氟化合物的量在13至84 mol 17c之间变化。使用可变误差方法估计单体反应性比率为r(CTFE)= 0.014 +/- 0.05,r(VAc)= 0.44 +/- 0.03; r(TFE)= -0.009 +/- 0.06,r(VAc)= 0.95 +/- 0.08;并且r(VDF)= -0.4 +/- 0.04,r(VAC)= 1.67 +/- 0.6。基于三单元组序列,质子NMR用于估计共聚物组成。这些数据以及反应性比率数据表明碳氟化合物与VAc交叉传播,并且VAc随机传播。所有样品均通过DSC的Tg进行表征,其中P(CTFE-co-VAc)的Tg在42至53摄氏度之间,P(TFE-co-VAc)的Tg在34至41摄氏度之间,P(VDF-co-VAc)在200摄氏度之间。 20和33摄氏度。在P(TFE-co-VAc)中将乙酸乙烯酯水解为乙烯醇(VA)得到三元共聚物P(TFE-co-VAc-co-VA),其中80%以上的VAc水解为VA,从而提供了反应性官能团组进行进一步修改。有趣的是,在乙酸乙烯酯水解成乙烯醇后,仅观察到摩尔质量的小幅下降,这反映了乙酸的损失并表明这些聚合物是线性的。本文提出的结果特别令人感兴趣,因为不需要表面活性剂(或分散剂)即可明显溶解于CO2。本文制备的含氟聚合物可用于涂料或油漆应用中。 [参考:35]

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