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~(13)C NMR AND INFRARED CHARACTERISTIC TACTICITY OF POLYACRYLONITRILE POLYMERIZED IN SUPERCRITICAL CO_2

机译:〜(13)超临界CO_2中聚丙烯腈的C NMR和红外特征术术

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With respect to the intense advantages in environmental friendly, low cost, and nonflammable alternatively to the aqueous and organic solvents, recently, the supercritical CO_2 has been broadly applied to make industrial polymers including the PAN. At present time, polymerization of acrylonitrile (AN) in the presence of CO_2 has been reported by some researchers. Of which, Shiho and DeSimone have carried out the dispersion polymerizatibn of acrylonitrile in carbon dioxide using a block copolymer as a stabilizer. They discussed the effects of reaction conditions on the resulting size of the PAN particles. In our lab, the precipitation polymerization of AN in supercritical CO_2 has also been successfully conducted. We discussed molecular weight and spinnability as well as molecular weight distribution of obtained PAN product. As an extension of the previous study, recently, the tacticity of PAN, prepared using AIBN as initiators by precipitation polymerization in supercritical CO_2 (hereafter, referred as CO_2-PAN) was investigated by ~(13)C NMR and IR method. We think the detailed analysis on tacticity of CO_2-PAN will be very helpful for a better understanding of CO_2-PAN's polymerization mechanism and its characteristics molecular properties in solution. In order to better understand the tacticity of CO_2-PAN (Mw=1.2x 10~5), in this paper, we tried to use the S-PAN (aqueous phase suspension polymerization, using AIBN as initiator, in radical mechanism, Mw=8.2 x 10~5) and R-PAN (using the redox type initiator in aqueous media, Mw=1.6x 10~5) for comparison. Notably, all the data for R-PAN is quoted from Kamide.
机译:关于环境友好,低成本和不可释放的含水和有机溶剂的强烈优点,最近,超临界CO_2已广泛应用于制造包括锅内的工业聚合物。目前,一些研究人员报道了在CO_2存在下丙烯腈(AN)的聚合。其中,使用嵌段共聚物作为稳定剂,Shiho和Desimone在二氧化碳中进行了二氧化碳的分散聚合物。他们讨论了反应条件对锅颗粒的尺寸的影响。在我们的实验室中,还成功地进行了超临界CO_2中的沉淀聚合。我们讨论了分子量和可纺性,以及所得锅产品的分子量分布。作为前一项研究的延伸,最近,通过〜(13)C NMR和IR方法研究了通过超临界CO_2(以下称为CO_2-PAN)的沉淀聚合而使用AIBN作为引发剂制备的锅的术。我们认为CO_2-PAN的术文的详细分析对于更好地了解CO_2-PAN的聚合机制及其特征在溶液中的特征分子特性非常有帮助。为了更好地了解CO_2-PAN(MW = 1.2X 10〜5)的术,我们尝试使用S-PAN(水相悬浮聚合,使用AIBN作为引发剂,以自由基机制,MW = 8.2×10〜5)和R-PAN(使用氧化还原型引发剂在水性介质中,MW = 1.6×10〜5)进行比较。值得注意的是,R-PAN的所有数据都是从kamide引用的。

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