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首页> 外文期刊>Journal of Applied Polymer Science >Singlet oxygen generation and adhesive loss in stimuli-responsive, fullerene-polymer blends, containing polystyrene-block-polybutadiene-block-polystyrene and polystyrene-block-polyisoprene-block-polystyrene rubber-based adhesives
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Singlet oxygen generation and adhesive loss in stimuli-responsive, fullerene-polymer blends, containing polystyrene-block-polybutadiene-block-polystyrene and polystyrene-block-polyisoprene-block-polystyrene rubber-based adhesives

机译:刺激响应的富勒烯-聚合物共混物中的单线态氧生成和胶粘剂损失,其中包含聚苯乙烯嵌段聚丁二烯嵌段聚苯乙烯和聚苯乙烯嵌段聚异戊二烯嵌段聚苯乙烯橡胶基胶粘剂

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摘要

The adhesive properties, as measured by bulk tack and peel strength analysis, were found to decrease in polystyrene-block-polybutadiene-block-polystyrene (SBS) and polystyrene-block-polyisoprene-block-polystyrene (SIS) PSA films containing common singlet oxygen generators, acridine, rose bengal, and C-60 fullerene, when irradiated with a tungsten halogen light in air. The addition of the singlet oxygen quencher, beta-carotene, to the C-60 fullerene samples was found to significantly deter the rate of adhesive loss in the fullerene-SBS and -SIS PSA nanocomposites. The presence of oxygen was essential to the mechanism of adhesive loss and, in combination with the effects of singlet oxygen generators and a singlet oxygen scavenger, strongly supports a singlet-oxygen mediated process. FTIR investigations of fullerene-SBS and -SIS systems suggest the initial formation of peroxides which, upon further irradiation, lead to the generation of carbonyl-containing compounds of a ketonic type after crosslinking. Rates of SBS and SIS C-H abstraction were comparable and found to decrease when the high-pressure, mercury xenon irradiation source was filtered to allow only light of lambda > 390 nm. (C) 2008 Wiley Periodicals, Inc.
机译:通过本体粘性和剥离强度分析测得的粘合性能在包含普通单线态氧的聚苯乙烯嵌段聚丁二烯嵌段聚苯乙烯(SBS)和聚苯乙烯嵌段聚异戊二烯嵌段聚苯乙烯(SIS)PSA膜中降低在空气中用卤钨钨灯照射时,产生a啶,玫瑰红和C-60富勒烯。发现在C-60富勒烯样品中添加单重态氧猝灭剂β-胡萝卜素可显着阻止富勒烯SBS和-SIS PSA纳米复合材料中胶粘剂的损失速率。氧的存在对于粘合剂损失的机理是必不可少的,并且与单线态氧产生剂和单线态氧清除剂的作用相结合,强烈支持单线态氧介导的过程。富勒烯-SBS和-SIS系统的FTIR研究表明,过氧化物的最初形成是在进一步辐照后导致交联后生成酮型含羰基的化合物。 SBS和SIS C-H提取速率相当,发现当过滤高压汞氙辐射源以仅允许λ> 390 nm的光时,SBS和SIS C-H的提取速率会降低。 (C)2008 Wiley期刊公司

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