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Syntheses and properties of graft polymers of N-substituted acrylamides onto EPDM

✍ Scribed by Kyoung-Gon Park; Jong-Gu Park; Chang-Sik Ha; Won-Jei Cho


Publisher
John Wiley and Sons
Year
1999
Tongue
English
Weight
256 KB
Volume
74
Category
Article
ISSN
0021-8995

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✦ Synopsis


The graft polymerizations of N-isopropylacrylamide (NIPAM) or N-phenylacrylamide (NPAM) onto ethylene-propylene-diene terpolymer (EPDM) were carried out with benzoyl peroxide (BPO) as an initiator in toluene or THF. The structures of synthesized graft polymers, EPDM-g-N-isopropylacrylamide (ENIPAM) and EPDM-g-N-phenylacrylamide (ENPAM), were identified by infrared (IR) spectroscopy. The effects of monomer concentration, reaction time, and initiator concentration were investigated on the graft polymerization. The highest graft efficiency of NIPAM was obtained at 0.75 mol/L of NIPAM, 4 g of EPDM, 3 wt % of BPO, and 70Β°C for 48 h and that of NPAM did not much change up to 0.75 mol/L of NPAM, 4 g of EPDM, 3 wt % of BPO, and 70Β°C for 72 h. The thermal decomposition temperatures, wettabilities, and tensile strengths of ENIPAM and ENPAM all decreased with an increasing concentration of NIPAM and NPAM moiety in the corresponding polymers, respectively. The morphologies of ENIPAM and ENPAM after irradiation showed many gel particles as compared with those of ENIPAM and ENPAM before irradiation. The UV light and 60 Co β₯-ray resistances of ENIPAM and ENPAM were worse than those of EPDM due to carbonyl group in NIPAM and NPAM.


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