首页> 外文期刊>Macromolecules >Kinetic study on the capping reaction of living polyisobutylene with 1,1-diphenylethylene. 1. Effect of temperature and comparison to the model compound 2-chloro-2,4,4-trimethylpentane
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Kinetic study on the capping reaction of living polyisobutylene with 1,1-diphenylethylene. 1. Effect of temperature and comparison to the model compound 2-chloro-2,4,4-trimethylpentane

机译:活性聚异丁烯与1,1-二苯乙烯封端反应的动力学研究。 1.温度的影响及与模型化合物2-氯-2,4,4-三甲基戊烷的比较

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The addition reaction of 1,1-diphenylethylene to polymeric and dimeric isobutylene living chain ends in the presence of TiCl4 was investigated in hexane/MeCl 60/40 (v/v) at -80 to -40 degrees C using on-line W-vis spectroscopy. The apparent equilibrium constants of capping/decapping, K-e, and the apparent rate constants of capping, k(c)K(i), were directly measured, and from these values, the corresponding rate constants of decapping, k(d), were calculated. The activation energy is found to be apparently negative for the capping reaction (k(c)K(i)) and positive for the decapping reaction (ha). However, the respective activation parameters for the polyisobutylene differ significantly from those of the dimer; i.e., the chain length affects the kinetics of the capping/decapping reaction. [References: 17]
机译:在己烷/ MeCl 60/40(v / v)中,于-80至-40摄氏度下,使用在线W-,研究了在TiCl4存在下1,1-二苯基乙烯与聚合物和二聚异丁烯活性链末端的加成反应。可见光谱。直接测量封顶/开封的表观平衡常数Ke和封顶的表观速率常数k(c)K(i),并从这些值中分别得出相应的封顶/封顶速率常数k(d)。计算。发现对于封端反应(k(c)K(i)),活化能显然是负的,对于封端反应(ha),活化能显然是正的。然而,聚异丁烯的各自的活化参数与二聚体的活化参数有很大的不同。即,链长影响封端/脱盖反应的动力学。 [参考:17]

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