Microstructure studies of isotactic polypropylene under natural weathering by positron annihilation lifetime spectroscopy

被引:0
作者
Kai Ni
Jingjun Zhu
Xia Liao
Yadong Lv
Lingyun Wu
Qiongwen Zhang
Zhu An
Qi Yang
Yajiang Huang
Guangxian Li
机构
[1] Sichuan University,College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering
[2] Sichuan University,Key Laboratory of Radiation Physics and Technology of Ministry of Education, Institute of Nuclear Science and Technology
来源
Journal of Polymer Research | 2015年 / 22卷
关键词
Polypropylene; Natural weathering; Microstructure; Molecular mobility; Positron annihilation lifetime spectroscopy;
D O I
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学科分类号
摘要
The microstructure evolution of isotactic polypropylene (PP) exposed to subtropical humid climate of Guangzhou of China, were investigated by gel permeation chromatography, Fourier transform infrared spectroscopy, differential scanning calorimeter, dynamic mechanical analysis and positron annihilation lifetime spectroscopy. Positron data showed that the free volume of PP matrix decreased with involving a shrinking of the free volume hole sizes as the extent of weathering degradation of PP aggravated. The shrinkage of free volume hole sizes may be traced to the loss of mobility of molecules of PP matrix. The increase of the glass transition temperature substantiated undoubtedly the decrease of molecular mobility of PP chains. The increase in crystallinity might increase the amount of rigid amorphous fraction of PP matrix, which induced the loss of molecular mobility. Furthermore, the decrease of ortho-positronium formation ought to be correlated to the increase in crystallinity and the increasing amount of scavenchers which were in this work represented by the carbonyl groups.
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[21]  
Rajakumar K(2005)Environmental degradation of isotactic polypropylene plates as studied by positron annihilation lifetime spectroscopy Eur Polym J 41 359-366
[22]  
Sarasvathy V(1997)Environmental degradation of a novel ethylene–propylene copolymer in thick sheets Polymer 38 5587-5593
[23]  
Chelvan AT(2008)Crystallization kinetics of polypropylene: II. Effect of the addition of short glass fibres Macromol Chem Phys 209 1920-1930
[24]  
Chitra R(2003)The free volume and its recovery in pressure-densified and CO Radiat Phys Chem 68 507-510
[25]  
Vijayakumar CT(2010)-swollen heterocyclic-ring-containing fluoropolymers J Appl Polym Sci 118 2601-2612
[26]  
Rimdusit S(1972)Accumulation of charges in polycarbonate due to positron irradiation J Polym Sci A Polym Chem 10 1077-1092
[27]  
Wongsongyot S(1985)Effect of iron carboxylates on the photodegradability of polypropylene. I. Natural weathering studies Polymer 26 1713-1718
[28]  
Jittarom S(1968)Surface changes during polypropylene photo-oxidation: a study by infrared spectroscopy and electron microscopy J Chem Phys 49 3840-3844
[29]  
Suwanmala P(1999)Localization of oxidation in polypropylene Polym Degrad Stab 65 25-36
[30]  
Tiptipakorn S(2012)Dispersion curves and frequency distributions of isotactic polypropylene J Appl Polym Sci 123 2968-2976