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首页> 外文期刊>Polymers >Crosslinked Polyarylene Ether Nitrile Interpenetrating with Zinc Ion Bridged Graphene Sheet and Carbon Nanotube Network
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Crosslinked Polyarylene Ether Nitrile Interpenetrating with Zinc Ion Bridged Graphene Sheet and Carbon Nanotube Network

机译:交联的聚亚芳基醚腈与锌离子桥接石墨烯片和碳纳米管网络互穿

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We report the fabrication and improved properties of crosslinked polyarylene ether nitrile (CPEN) interpenetrating with a zinc ion bridged graphene sheet (GS) and carbon nanotube (CNT) network (GS-Zn-CNT) (CPEN/GS-Zn-CNT). Graphene oxide (GO) and acidulated CNT were firstly prepared and then coordinated with zinc ions to form the zinc ion bridged GO and CNT network (GO-Zn-CNT). The mass ratio of GO and acidulated CNT in GO-Zn-CNT was controlled to be 1:3 and the optimized content of Zn 2+ was Zn 2+ /C = 0.01 mmol/mg (mole of zinc acetate/total weight of GO and acidulated CNT). Phthalonitrile end-capped polyarylene ether nitrile (PEN-Ph) permeated into the GO-Zn-CNT in N -methyl-2-pyrrolidone (NMP) and the corresponding composite PEN/GO-Zn-CNT was fabricated through the solution-casting method. After thermal annealing at 230 °C for 1 h and further curing at 320 °C for 2 h, the GO in GO-Zn-CNT was partly reduced into GS, and PEN-Ph was crosslinked, offering the CPEN/GS-Zn-CNT. The mechanical, thermal, and electrical properties of the obtained CPEN/GS-Zn-CNT were investigated in detail. The glass transition temperature, relative permittivity, and tensile strength of CPEN/GS-Zn-CNT with 2.0 wt % GS-Zn-CNT, compared to that of PEN, were increased by 18%, 181%, and 27%, respectively. The CPEN/GS-Zn-CNT based composite is a potential candidate as material in high performance electronic devices.
机译:我们报告的交联的聚亚芳基醚腈(CPEN)与锌离子桥接的石墨烯片(GS)和碳纳米管(CNT)网络(GS-Zn-CNT)(CPEN / GS-Zn-CNT)互穿的制造和改进的性能。首先制备氧化石墨烯(GO)和酸化的CNT,然后与锌离子配位形成锌离子桥接的GO和CNT网络(GO-Zn-CNT)。将GO与酸化的CNT在GO-Zn-CNT中的质量比控制为1:3,Zn 2+的最佳含量为Zn 2+ / C = 0.01 mmol / mg(乙酸锌的摩尔数/ GO的总重量)和酸化的CNT)。邻苯二甲腈封端的聚亚芳基醚腈(PEN-Ph)渗透到N-甲基-2-吡咯烷酮(NMP)中的GO-Zn-CNT中,并通过溶液流延法制备相应的复合PEN / GO-Zn-CNT 。在230°C下热退火1小时,然后在320°C下进一步固化2小时后,GO-Zn-CNT中的GO被部分还原为GS,并且PEN-Ph被交联,从而提供CPEN / GS-Zn-碳纳米管详细研究了所得CPEN / GS-Zn-CNT的机械,热和电性能。与PEN相比,含2.0 wt%GS-Zn-CNT的CPEN / GS-Zn-CNT的玻璃化转变温度,相对介电常数和拉伸强度分别提高了18%,181%和27%。基于CPEN / GS-Zn-CNT的复合材料是高性能电子设备中潜在的候选材料。

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