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Simultaneously improving of thermal resistance and mechanical performances of cyclic olefin copolymers by incorporation of bulky adamantane side group

机译:通过掺入大块金刚烷侧基同时提高环烯烃共聚物的耐热性和机械性能

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摘要

Due to the low toxicity, excellent thermal resistance, optical performances and dielectric properties, cyclic olefin copolymers (COCs) could be widely applied in manufacturing of food and medicine package, optical components, electronic device, and so forth. However, most of the commoditized COCs possessing glass transition temperatures (T(g)s) higher than 150? always show non-ignorable mechanical brittleness. Herein, a bulky cyclic olefin, 5-norboenene-2,3-dicarboxylicacid-adamantan-1-yl ester (NBDAE), was synthesized by one step reaction in high yields and subsequently employed to copolymerize with cis-cyclooctene (COE), affording a series of COCs bearing bulky adamantane side group. Due to the incorporation of the bulky norbornene derivative (NBDAE), the obtained COCs exhibited high T(g)s (up to 216?) and transparency (higher than 90), even at relatively low NBDAE incorporations. As expected, the NBDAE-COE copolymers also showed improved mechanical properties compared to commercialized Zeonex (R) 330R (Stress at break: 39.1 MPa, strain at braek: 2.3). Most of the synthesized COCs showed thermal decomposition temperatures (T(d)s) higher than 300? and did not decompose under maintaining at 250? for 1 h. Considering the performances mentioned above, the prepared COCs would show more greatly potential application in various fields.
机译:环烯烃共聚物(COCs)具有毒性低、耐热性好、光学性能好、介电性能好等优点,可广泛应用于食品药品包装、光学元件、电子器件等制造领域。然而,大多数商品化的COCs的玻璃化转变温度(T(g)s)高于150?始终表现出不可忽视的机械脆性。本文通过一步反应高产率合成了一种大块状环状烯烃5-去甲烯-2,3-二羧酸-金刚烷-1-基酯(NBDAE),随后与顺式环辛烯(COE)共聚,得到一系列带有大块金刚烷侧基的COC。由于掺入了大块的降冰片烯衍生物(NBDAE),即使在相对较低的NBDAE掺入量下,所获得的COCs也表现出较高的T(g)s(高达216?)和透明度(高于90%)。正如预期的那样,与商业化的Zeonex (R) 330R(断裂应力:39.1 MPa,制动应变:2.3%)相比,NBDAE-COE共聚物的机械性能也有所提高。大多数合成的COCs的热分解温度(T(d)s)均高于300?并且在维持在250下没有分解?1小时。综上所述,所制备的COCs在各个领域都具有更大的应用潜力。

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