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首页> 外文期刊>Journal of Applied Polymer Science >BULK SURFACE PHOTOGRAFTING PROCESS AND ITS APPLICATIONS .1. REACTIONS AND KINETICS
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BULK SURFACE PHOTOGRAFTING PROCESS AND ITS APPLICATIONS .1. REACTIONS AND KINETICS

机译:本体表面照相制版工艺及其应用.1。反应与动力学

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摘要

A bulk surface photografting process which is conducted in the interface between two polymer films was designed and investigated. The bulk surface photografting is a highly efficient process. With this method, the surface of hydrophobic polymers can be made hydrophilic in less than 2 s and a grafted layer 5 mu m thick can be obtained in 30 s. The kinetic investigation shows that the bulk surface photografting polymerization involves a four-step reaction process: induction period, surface initiation, successive polymerization, and solid-phase crosslinking. The photoreduction of benzophenone (BP) takes place in the interlayer between the LDPE films and is a three-stage process: surface photoreduction, secondary photoreduction, and solid-state photoreduction. With regard to the photoreduction of the initiator caused by hydrogen abstraction, the kinetic studies show that the photoreduction rate has a first-order dependence on the BP concentration. The activation energy of the hydrogen abstraction reaction is about 28.5 kJ (6.8 kcal)/mol. With regard to the photografting polymerization reaction, the reaction order of the rate Rp with respect to the monomer is unity and 0.89 with respect to BP. This means that the termination reaction takes place mainly by combination of polymer chain free radicals and semipinacol free radicals from BP. The activation energy of the overall polymerization reaction is around 8.8 kJ (2.1 kcal)/mol. (C) 1996 John Wiley & Sons, Inc. [References: 18]
机译:设计并研究了在两个聚合物膜之间的界面中进行的本体表面光接枝工艺。本体表面光接枝是高效的方法。用这种方法,可以使疏水性聚合物的表面在不到2 s的时间内变得亲水,并在30 s内获得5μm厚的接枝层。动力学研究表明,本体表面光接枝聚合反应涉及四个步骤的反应过程:诱导期,表面引发,连续聚合和固相交联。二苯甲酮(BP)的光还原发生在LDPE膜之间的中间层中,并且分三个阶段:表面光还原,二次光还原和固态光还原。关于由夺氢引起的引发剂的光还原,动力学研究表明光还原速率对BP浓度具有一阶依赖性。氢提取反应的活化能为约28.5kJ(6.8kcal)/ mol。关于光接枝聚合反应,相对于单体的比率Rp的反应顺序为统一,相对于BP的反应顺序为0.89。这意味着终止反应主要是通过结合BP的聚合物链自由基和半频哪醇自由基来进行的。整个聚合反应的活化能约为8.8 kJ(2.1 kcal)/ mol。 (C)1996 John Wiley&Sons,Inc. [参考:18]

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