期刊論文
學年 | 96 |
---|---|
學期 | 1 |
出版(發表)日期 | 2007-08-03 |
作品名稱 | Analysis of rapid chain dynamics in isochronal dielectric measurements of polymers |
作品名稱(其他語言) | |
著者 | Yang, Yuning; 賴偉淇; Lai, Wei-chi; Hsu, Shaw-ling |
單位 | 淡江大學化學工程與材料工程學系 |
出版者 | Melville: American Institute of Physics (AIP) |
著錄名稱、卷期、頁數 | Journal of Chemical Physics 127(5), pp.054901 |
摘要 | Fast dynamics within the microwave frequency range (approximately gigahertz) in polymer systems as a function of temperature (in the range from 20 to 190 °C) were studied using high frequency dielectric spectroscopy. The frequency of radiation was varied from 0.5 to 18 GHz. The isochronal dielectric loss data were taken to eliminate the complexity arising from the frequency-independent, temperature-dependent background loss in the condensed phase. These studies were conducted for poly(caprolactone) (PCL), poly(ethylene oxide) (PEO), poly(ethylene oxide) with methoxy end group (PEO-CH3), PLA-b-PEO-b-PLA triblock copolymers, and several polymers with high glass transition temperatures. These polymers possess glass temperatures ranging from −62 °C (PCL) to 110 °C (PMMA). One broad relaxation process was found only for polymers (PCL, PEO, and PLA-b-PEO-b-PLA) with low glass transition temperatures. The effect due to end groups was investigated by comparing the results of PEO with hydroxy versus methoxy end groups. The measured relaxation process was determined not to be associated with end groups. The results from temperature-dependent dielectric spectroscopy indicate that the relaxation process follows an Arrhenius T dependence suggesting that it is due to local motions. The activation energy of the relaxation process was measured and investigated based on the coupling model. The results suggest that the observed relaxation process behaves as a Johari-Goldstein β relaxation. |
關鍵字 | |
語言 | en |
ISSN | 0021-9606 |
期刊性質 | 國外 |
收錄於 | SCI EI |
產學合作 | |
通訊作者 | |
審稿制度 | |
國別 | |
公開徵稿 | |
出版型式 | 紙本 |
相關連結 |
機構典藏連結 ( http://tkuir.lib.tku.edu.tw:8080/dspace/handle/987654321/44150 ) |