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

被引:12
|
作者
Phillips, J. Paige [1 ]
Deng, Xiao [1 ]
Todd, Meredith L. [1 ]
Heaps, David T. [1 ]
Stevenson, Steven [1 ]
Zhou, Hui [2 ]
Hoyle, Charles E. [2 ]
机构
[1] Univ So Mississippi, Dept Chem & Biochem, Hattiesburg, MS 39406 USA
[2] Univ So Mississippi, Sch Polymers & High Performance Mat, Hattiesburg, MS 39406 USA
关键词
adhesives; blends; fullerenes; irradiation; photochemistry;
D O I
10.1002/app.28337
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
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.
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页码:2895 / 2904
页数:10
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