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Gas-phase assisted surface polymerization of vinyl monomers with Fe-based initiating systems

机译:铁基引发体系的气相催化乙烯基单体表面聚合

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摘要

Gas-phase assisted surface polymerization (GASP) of methyl methacrylate (MMA) and styrene (St) was investigated with Fe-based radical initiating systems, FeCl2/ 2,2'-bipyridine (Bpy)/methyl alpha-bromophenylacetate (MBPA), etc. GASP with these initiating systems proceeded to produce corresponding polymers on substrate surfaces. The resulting PMMA had very high PDI values, suggesting an uncontrolled reaction. In an attempt to control the GASP, polymerization with a simple initiating system, Fe(0)/MBPA, was examined on Fe(0)-metal surfaces, resulting in significant polymerization activity to produce high-molecular-weight PMMA. The results of time-course tests on GASP of MMA and St suggested that a change had taken place to produce physically controlled propagation sites on the Fe(0) powder surfaces.
机译:用Fe基自由基引发体系FeCl2 / 2,2'-联吡啶(Bpy)/α-溴苯基乙酸甲酯(MBPA)研究了甲基丙烯酸甲酯(MMA)和苯乙烯(St)的气相辅助表面聚合(GASP),使用这些引发系统的GASP继续在基材表面上生产相应的聚合物。所得的PMMA具有非常高的PDI值,表明反应不受控制。为了控制GASP,在Fe(0)-金属表面上检测了具有简单引发剂Fe(0)/ MBPA的聚合反应,从而导致产生高分子量PMMA的显着聚合活性。在MMA和St的GASP上进行时程测试的结果表明,已经发生了变化,在Fe(0)粉末表面上产生了物理控制的传播位点。

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