首页> 美国卫生研究院文献>Molecules >Intercalated Poly (2-acrylamido-2-methyl-1-propanesulfonic Acid) into Sulfonated Poly (14-phenylene ether-ether-sulfone) Based Proton Exchange Membrane: Improved Ionic Conductivity
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Intercalated Poly (2-acrylamido-2-methyl-1-propanesulfonic Acid) into Sulfonated Poly (14-phenylene ether-ether-sulfone) Based Proton Exchange Membrane: Improved Ionic Conductivity

机译:嵌入聚(2-丙基酰胺-2-甲基-1-丙二磺酸)磺化聚(14-亚苯基醚 - 砜)的质子交换膜:改善离子电导率

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摘要

A series of hybrid proton exchange membranes were synthesized via in situ polymerization of poly (2-acrylamido-2-methyl-1-propanesulfonic acid) PMPS with sulfonated poly (1,4-phenylene ether-ether-sulfone) (SPEES). The insertion of poly (2-acrylamido-2-methyl-1-propanesulfonic acid) PMPS, between the rigid skeleton of SPEES plays a reinforcing role to enhance the ionic conductivity. The synthesized polymer was chemically characterized by fourier-transform infrared spectroscopy (FT-IR) and nuclear magnetic resonance 1H NMR spectroscopy to demonstrate the successful grafting of PMPS with the pendent polymer chain of SPEES. A variety of physicochemical properties were also investigated such as ion exchange capacity (IEC), proton conductivity, water uptake and swelling ratio to characterize the suitability of the formed polymer for various electrochemical applications. SP-PMPS-03, having the highest concentration of all PMPS, shows excellent proton conductivity of 0.089 S cm−1 at 80 °C which is much higher than SPEES which is ~0.049 S cm−1. Optimum water uptake and swelling ratio with high conductivity is mainly attributed to a less ordered arrangement polymer chain with high density of the functional group to facilitate ionic transport. The residual weight was 93.35, 92.44 and 89.56%, for SP-PMPS-01, 02 and 03, respectively, in tests with Fenton’s reagent after 24 h. In support of all above properties a good chemical and thermal stability was also achieved by SP-PMPS-03, owing to the durability for electrochemical application.
机译:通过磺化聚(1,4-亚苯基醚 - 硫砜)(SPEEE)的聚(2-丙基丙酰胺-2-甲基-1-丙二磺酸)PMP,通过原位聚合合成一系列杂交质子交换膜。聚(2-丙基酰胺-2-甲基-1-丙二磺酸)PMP的插入刚性骨架之间的刚性骨架之间的增强作用以提高离子电导率。通过傅里叶变换红外光谱(FT-IR)和核磁共振1H NMR光谱,化学表征合成的聚合物,以证明具有翼型的垂直聚合物链的PMP的成功接枝。还研究了各种物理化学性质,例如离子交换能力(IEC),质子电导率,水吸收和溶胀比,以表征形成的各种电化学应用的所形成的聚合物的适用性。具有最高浓度的PMP的SP-PMPS-03显示出优异的质子电导率为0.089scm-1,在80℃下,高于〜0.049scm-1的尺寸远高得多。具有高导电性的最佳水吸收和溶胀比主要归因于具有高密度的官能团的较少有序的布置聚合物链,以促进离子运输。对于24小时后,分别在与Fenton试剂的试验中,残留重量为93.35,02.44和89.56%,分别在Fenton试剂中试验。为了支持以上所有特性,由于电化学应用的耐久性,SP-PMPS-03也实现了良好的化学和热稳定性。

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