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Effect of Polymer Chain Scission on Photodegradation Behavior of Polystyrene/Multi-Wall Carbon Nanotube Composite

机译:聚合物链断裂对聚苯乙烯/多壁碳纳米管复合材料光降解行为的影响

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摘要

To clarify an effect of polymer chain scission on a polystyrene (PS)/multi-wall carbon nanotube (MWNT) composite photodegradation, a relationship between the change of molecular weight and photodegradation behavior was studied. The MWNT loading brought about severe PS chain scission and led to the increase of the low molecular weight (less than 10~5) fraction. The increase of the fraction was not proportional to the loading amount and showed the minimum at the 2 loading. The strange behavior was due to a rheological effect bringing about a decrease of shear stress in the composite preparation. An unsaturated end group was produced by the chain scission and became the photodegradation initiator leading to auto-oxidation and crosslink reactions. The MWNT scavenged radical species and worked as an antioxidant. The coexistence of the unsaturated end group and MWNT made the photodegradation behavior complicated. However, the MWNT radical scavenging ability was considerably poor, and the MWNT had little ability to inhibit the photodegradation initiation.
机译:为了阐明聚合物链断裂对聚苯乙烯(PS)/多壁碳纳米管(MWNT)复合材料光降解的影响,研究了分子量变化与光降解行为之间的关系。MWNT负载导致严重的PS链断裂,导致低分子量(小于10~5)组分的增加。该分数的增加与负载量不成正比,并且在 2% 负载时显示最小值。这种奇怪的行为是由于流变效应导致复合材料制备中的剪切应力降低。链断产生不饱和端基,成为光降解引发剂,导致自氧化和交联反应。MWNT清除自由基物种并作为抗氧化剂。不饱和端基和MWNT的共存使得光降解行为变得复杂。然而,MWNT的自由基清除能力较差,对光降解起始的抑制能力很小。

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