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首页> 外文期刊>Journal of Applied Polymer Science >Fourier transform near-infrared and electron spin resonance studies on the crosslinking reaction of liquid carboxylated poly(acrylonitrile-co-butadiene) rubber with dicumyl peroxide in dioxane
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Fourier transform near-infrared and electron spin resonance studies on the crosslinking reaction of liquid carboxylated poly(acrylonitrile-co-butadiene) rubber with dicumyl peroxide in dioxane

机译:液态羧化聚(丙烯腈-共丁二烯)橡胶与过氧化二枯基在二恶烷中的交联反应的傅里叶变换近红外和电子自旋共振研究

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The crosslinking reaction of liquid carboxylated poly(acrylonitrile-co-butadiene) [or nitrile rubber (NBR); acrylonitrile = 10 wt %] with dicumyl peroxide (DCPO) was studied in dioxane by means of Fourier transform near-infrared spectroscopy (FT-NIR) and electron spin resonance spectroscopy (ESR). Among the three butadiene units (1,2, cis-1,4, and trans-1,4 units) of NBR, only the pendant vinyl group of the 1,2 unit showed an absorption at 6110 cm(-1) from the FT-NIR examination of dioxane solutions of NBR, 1-octene, 3,3-dimethyl-1-butene, trans-2-octene, cis-5-octen-1-ol, poly-cis-1,4-butadiene, and poly-1,2-butadiene. The crosslinking reaction was followed in situ in dioxane by the monitoring of the disappearance of the pendant vinyl double bond with FT-NIR. The initial disappearance rate (R-0) of the vinyl group was expressed by R-0 = k[DCPO](0.9)[NBR](-0.2) (120degreesC). The overall activation energy of the reaction was calculated to be 20.7 kcal/mol. This unusual rate equation suggests unimolecular termination due to degradative chain transfer and depressed reactivity of the vinyl group caused by crosslinking. ESR study of the reaction mixture revealed that an allyl-type polymer radical was formed in the reaction, and its concentration increased with time and was then saturated. (C) 2003 Wiley Periodicals, Inc. [References: 15]
机译:液态羧化聚(丙烯腈-共-丁二烯)[或丁腈橡胶(NBR)的交联反应;借助傅立叶变换近红外光谱(FT-NIR)和电子自旋共振光谱(ESR)在二恶烷中研究了用过氧化二枯基(DCPO)制备的丙烯腈= 10 wt%。在NBR的三个丁二烯单元(1,2,顺式1,4和反式1,4单元)中,只有1,2单元的侧基乙烯基在6110 cm(-1)处显示吸收。 FT-NIR检查NBR,1-辛烯,3,3-二甲基-1-丁烯,反式-2-辛烯,顺式5-辛烯-1-醇,聚顺式1,4-丁二烯,和聚1,2-丁二烯。通过用FT-NIR监测乙烯基侧链双键的消失,在二恶烷中原位追踪交联反应。乙烯基的初始消失率(R-0)用R-0 = k [DCPO](0.9)[NBR](-0.2)(120℃)表示。该反应的总活化能经计算为20.7kcal / mol。这个不寻常的速率方程表明,由于降解的链转移和交联引起的乙烯基反应性降低,导致单分子终止。对反应混合物的ESR研究表明,在反应中形成了烯丙基型聚合物自由基,并且其浓度随时间增加然后饱和。 (C)2003 Wiley Periodicals,Inc. [参考:15]

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