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A novel sPEEK nanocomposite membrane with well-controlled sPOSS aggregation in tunable nanochannels for fast proton conduction

机译:小说和纳米复合材料薄膜在可调控制检测聚合纳米通道快速质子传导

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摘要

To greatly increase the proton conductivity of a sPEEK nanocomposite membrane without water swelling problems, sulfonated PEEK (sPEEK) nanocomposite membranes were prepared by regulating the nanocomposite concentration of sulfonated POSS (sPOSS). Incorporation of sPOSS into sPEEK afforded a 39% increase in proton conductivity at 80 degrees C/100% RH and a 70% increase in cell performance at 1.5 wt% sPOSS concentration. In particular, water swelling problems were not observed even with the attained proton conductivity, as with Nafion. The water swelling of the pristine sPEEK membrane was 18.8%; it increased to 24.4% at 5.0 wt% of sPOSS loading, which was 11.1% lower than that of Nafion. The high modulus of sPOSS and the good distribution of sPOSS also enhanced the tensile strength by 40.5% and the strain by 65.8% compared with the pristine sPEEK membrane. At more than 1.5 wt% sPOSS concentration, the conductivity and power output of the nanocomposite membranes decreased despite the increased IEC, which is highly related to aggregation of sPOSS nanoparticles in the proton conducting nanochannels and changes in the nanochannel size. The sizes of the nanochannels were measured by SAXS, and it was found that expansion of the nanochannels was enhanced at 1.5 wt% by the best distribution of sPOSS and absorption of water. The increased IEC, expanded nanochannels and distribution of sPOSS without aggregation promoted proton conduction through the nanochannels.
机译:的质子导电率大大增加没有水亲临纳米复合膜肿胀问题,磺化PEEK(斑点)纳米复合膜是由纳米复合材料的浓度调节磺化改性(检测)。成斑点提供质子增加39%电导率在80摄氏度/ 100% RH和70%增加细胞表现为1.5 wt %进行比较浓度。问题并没有观察到即使获得质子电导率,与电解质。膜是有肿胀的斑点18.8%;加载,低于11.1%nafion分布的检测也提高了强度力量应变40.5%和65.8%膜有较原始的斑点。超过1.5 wt %检测浓度,导电率和功率的输出纳米复合材料膜尽管下降增加了IEC,这是高度相关的检测纳米粒子的聚合质子进行纳米通道的变化纳米通道的大小。测量了一枝,发现纳米通道的扩张是提高为1.5wt %的最佳分布进行比较吸收的水。纳米通道和分布进行比较聚合促进质子传导

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