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Influence of Sulfonic Acid Group on Sulfonated Polyethersulfone Membrane for PEM Fuel Cell: A First-Principles Study

机译:磺酸基对PEM燃料电池磺化聚醚砜膜的影响:第一性原理研究

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摘要

The introduction of a protogenic group such as sulfonic acid allows the operation of polymer electrolyte membranes for fuel cells at intermediate temperature (>100 degrees C) and very low humidity. A sulfonated polyethersulfone (SPES) membrane with additional sulfonation was simulated by density functional theory calculations to determine the beneficial effect of the sulfonic group, which induces hydrophilicity for increased hydrogen conductivity. A higher degree of sulfonation enhances the H2O adsorption. In particular, trans-di-SPES (trans-DSPES), with higher charge transfer to H2O and more hydrogen bonds, is more favorable for H2O adsorption than cis-DSPES; this is attributed to its narrow band gap (2.84 eV) and high adsorption energy (-0.81 eV) compared to cis-DSPES (2.96 and -0.69 eV, respectively). Theoretical findings suggest that adding the sulfonic acid group ultimately yields greater H2O adsorption on DSPES, increasing the hydrophilicity.
机译:引入质子基团例如磺酸允许用于燃料电池的聚合物电解质膜在中间温度(> 100℃)和非常低的湿度下操作。通过密度泛函理论计算模拟了具有额外磺化作用的磺化聚醚砜(SPES)膜,以确定磺酸基的有益作用,该作用诱导亲水性以增加氢电导率。更高的磺化度会增强H2O的吸附。尤其是,反式-di-SPES(trans-DSPES)具有更高的电荷转移至H2O和更多的氢键,比顺式-DSPES对水的吸附更有利。与顺式DSPES(分别为2.96和-0.69 eV)相比,这是由于其窄带隙(2.84 eV)和高吸附能(-0.81 eV)引起的。理论发现表明,添加磺酸基团最终会在DSPES上产生更大的H2O吸附,从而增加亲水性。

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