首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Catalytic hydrogenation of methyl methacrylate-g-natural rubber (MMA-g-NR) in the presence of OsHCl(CO) (O_2) (PCy3)2
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Catalytic hydrogenation of methyl methacrylate-g-natural rubber (MMA-g-NR) in the presence of OsHCl(CO) (O_2) (PCy3)2

机译:在OsHCl(CO)(O_2)(PCy3)2存在下对甲基丙烯酸甲酯-g-天然橡胶(MMA-g-NR)进行催化加氢

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摘要

The graft copolymerization of methyl methacrylate onto natural rubber (NR) was carried out by using cumene hydroperoxide as redox initiator.The monomer conversion,grafting efficiency,and graft copolymer composition were examined.The purified graft copolymer was then hydrogenated by using a homogeneous osmium catalyst,OsHCl(CO) (O_2) (PCy3)2.The purified graft copolymer and hydrogenated graft copolymer samples were characterized by Fourier transform infrared (FT1R) spectroscopy and nuclear magnetic resonance (NMR) spectroscopy.A detailed kinetic investigation of the hydrogenation was carried out by monitoring the amount of hydrogen consumption using a gas-uptake apparatus.The kinetic results for the hydrogenation of graft natural rubber indicated that the rate of hydrogenation exhibited a first-order dependence on the catalyst concentration.The hydrogenation exhibited a first-order dependence on hydrogen pressure which then decreased toward a zero-order dependence at higher hydrogen pressure.The addition of a small amount of acid provided a beneficial effect on the hydrogenation of grafted natural rubber.The hydrogenation rate was dependent on the reaction temperature and the apparent activation energy over the range of 120-160 °C was found to be 70.3 kj/ mol.The mechanistic aspects of these catalytic processes are discussed based on the observed kinetic results.Thermal properties of the grafted copolymer and hydrogenated grafted copolymer were also determined.
机译:以氢过氧化枯烯为氧化还原引发剂,将甲基丙烯酸甲酯接枝到天然橡胶(NR)上,研究了单体转化率,接枝效率和接枝共聚物组成,然后使用均相催化剂将纯化的接枝共聚物氢化。 OsHCl(CO)(O_2)(PCy3)2。通过傅立叶变换红外光谱(FT1R)和核磁共振谱(NMR)对纯化的接枝共聚物和氢化接枝共聚物样品进行表征。对氢化反应进行了详细的动力学研究。接枝天然橡胶的氢化动力学结果表明,氢化速率与催化剂浓度呈一阶相关关系,氢化与一氧化氮呈一阶相关关系。氢压力,然后在较高氢预压力下向零级依赖下降确保添加少量酸对接枝天然橡胶的氢化具有有益作用,氢化速率取决于反应温度,在120-160°C范围内的表观活化能为70.3。基于观察到的动力学结果讨论了这些催化过程的机理。还确定了接枝共聚物和氢化接枝共聚物的热性能。

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