首页> 美国卫生研究院文献>Polymers >Alleviating the Mechanical and Thermal Degradations of Highly Sulfonated Poly(Ether Ether Ketone) Blocks via Copolymerization with Hydrophobic Unit for Intermediate Humidity Fuel Cells
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Alleviating the Mechanical and Thermal Degradations of Highly Sulfonated Poly(Ether Ether Ketone) Blocks via Copolymerization with Hydrophobic Unit for Intermediate Humidity Fuel Cells

机译:通过与疏水单元的共聚作用减轻中等湿度燃料电池的高磺化聚醚醚酮嵌段的机械和热降解

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摘要

In this contribution, sulfonated poly(ether ether ketone) (SPEEK) is inter-connected using a hydrophobic oligomer via poly-condensation reaction to produce SPEEK analogues as PEMs. Prior sulfonation is performed for SPEEK to avoid random sulfonation of multi-block copolymers that may destroy the mechanical toughness of polymer backbone. A greater local density of ionic moieties exist in SPEEK and good thermomechanical properties of hydrophobic unit offer an unique approach to promote the proton conductivity as well as thermomechanical stability of membrane, as verify from AC impedance and TGA. The morphological behavior and phase variation of membranes are explored using FE-SEM and AFM; the triblock (XYX) membranes exhibits a nano-phase separated morphology. Performance of PEFC integrated with blend and block copolymer membranes is determined at 60 °C under 60% RH. As a result, the triblock (XYX) membrane has a high power density than blend (2X1Y) membrane.
机译:在这一贡献中,使用疏水性低聚物通过缩聚反应将磺化的聚醚醚酮(SPEEK)相互连接,以产生作为PEM的SPEEK类似物。对SPEEK进行事先磺化可避免多嵌段共聚物的无规磺化,这可能会破坏聚合物主链的机械韧性。 SPEEK中存在更大的离子部分局部密度,疏水单元的良好热机械性能为提高质子传导性以及膜的热机械稳定性提供了独特的方法,这已通过交流阻抗和TGA进行了验证。用FE-SEM和AFM探索膜的形态行为和相变。三嵌段(XYX)膜表现出纳米相分离的形态。在60°C,60%RH下测定掺有共混和嵌段共聚物膜的PEFC的性能。结果,三嵌段(XYX)膜比混合(2X1Y)膜具有更高的功率密度。

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