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In situ block copolymer formation during solid-state shear pulverization: An explanation for blend compatibilization via interpolymer radical reactions

机译:固态剪切粉碎过程中原位嵌段共聚物的形成:通过互聚物自由基反应进行共混增容的解释

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Interpolymer radical coupling reaction leading to block copolymer formation has been demonstrated for the first time in the solid state and in the absence of diffusion using solid-state shear pulverization. Radical coupling is often referred to as a diffusion-controlled reaction as it lacks an activation barrier to reaction. However, pulverization can lead both to intimate mixing, creating large interfacial area between blend components, and to chain scission, yielding polymer radicals and accommodating interpolymer coupling in the solid state. Fluorescence-detection gel permeation chromatography (GPC) vas used to detect interpolymer reaction in high-molecular-weight (MW) polystyrene (PS)/pyrene-labeled PS and high-MW poly(methyl methacrylate) (PMMA)/pyrene-labeled PS blends. The latter system was chosen as PMMA/PS blend compatibilization vas recently achieved via pulverization; this compatibilization was hypothesized to originate from in situ block copolymer formation via interpolymer radical coupling. Proof of coupling was obtained in this study from pyrene fluorescence in pulverized blends at GPC elution tunes less than those of the original prone-labeled PS. With the high-MW PS/pyrene-labeled PS mixture, comparison of label on coupled chains label on chains that underwent scission indicates that similar to5% of the pyrene-labeled char undergoing scission were able to couple to radicals originating from the high-MW PS. The effect of MW, blend composition, and screw design can chain scission during pulverization was also studied. [References: 57]
机译:使用固态剪切粉碎在固态下和在没有扩散的情况下首次证明了导致嵌段共聚物形成的互聚物自由基偶联反应。自由基偶合通常被称为扩散控制的反应,因为它缺乏反应的活化障碍。然而,粉碎既可以导致紧密混合,在共混物组分之间产生大的界面面积,也可以导致断链,产生聚合物自由基并以固态容纳互聚物。荧光检测凝胶渗透色谱(GPC)容器,用于检测高分子量(MW)聚苯乙烯(PS)/ py标记的PS和高MW聚甲基丙烯酸甲酯(PMMA)/ py标记的PS中的共聚体反应混合。后一种系统被选为最近通过粉碎获得的PMMA / PS共混增容剂。假设这种相容性源自经由互聚物自由基偶联的原位嵌段共聚物形成。在这项研究中,从粉碎的混合物中pyr的荧光在GPC上的洗脱声调小于原始的易于标记的PS,获得了耦合的证据。使用高分子量PS / py标记的PS混合物,对进行断裂的链上标记的比较比较表明,经过断裂的the标记的碳中有近5%能够与源自高分子量的自由基偶联PS。还研究了分子量,共混物组成和螺杆设计对粉碎过程中链断裂的影响。 [参考:57]

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