2003
DOI: 10.1016/s0032-3861(02)00727-9
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A MALDI, TGA, TG/MS, and DEA study of the irradiation effects on PMMA

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Cited by 33 publications
(11 citation statements)
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“…The least thermally stable was C0.1T14, which is related to hydrolyzing effect of cellulase on polymers. The lower thermal stability is caused by decreasing of molecular weight [26]. Despite the fact that the maximum cellulase activity used in our study is displayed at temperature of 40 ∘ C to 57 ∘ C and pH of 4.2 to 6.5, we can assume that hydrolytic effect is also possible at 24 ∘ C and pH of 4.0-4.5 during structuring process.…”
Section: Resultsmentioning
confidence: 65%
“…The least thermally stable was C0.1T14, which is related to hydrolyzing effect of cellulase on polymers. The lower thermal stability is caused by decreasing of molecular weight [26]. Despite the fact that the maximum cellulase activity used in our study is displayed at temperature of 40 ∘ C to 57 ∘ C and pH of 4.2 to 6.5, we can assume that hydrolytic effect is also possible at 24 ∘ C and pH of 4.0-4.5 during structuring process.…”
Section: Resultsmentioning
confidence: 65%
“…The G-value of acid generation is 1.4 without any acid generators. 124) Although the counteranion has not been identified, it is possibly a formic 198) or acetic 196) anion. The main chain scission of PMMA is also induced by UV light.…”
Section: Methacrylate Polymermentioning
confidence: 99%
“…Xie (2011) observed that complex enzymes composed of commercial cellulose, pectinase and α-amylase degrade the large molecular chain of chitosan, and as a consequence, molecular weight lowered from 1,000,000 to 100,000. According to Tatro et al (2003), lower thermal stability is caused by decreasing of molecular weight. The same result is observed in this study.…”
Section: Antibacterial Activitymentioning
confidence: 99%