首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Sulfonated poly (ether sulfone) composite membranes customized with polydopamine coated molybdenum disulfide nanosheets for renewable energy devices
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Sulfonated poly (ether sulfone) composite membranes customized with polydopamine coated molybdenum disulfide nanosheets for renewable energy devices

机译:磺化聚(醚砜)复合膜与聚二胺涂覆的钼二硫化物纳米型为可再生能源装置

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摘要

Sulfonated poly (ether sulfone) (SPES) membranes are fabricated using polydopamine layered molybdenum disulfide (PDM) nanosheets. The exfoliated molybdenum disulfide (E-MoS2) nanosheets are subjected to surface coating with self-polymerization of dopamine and probed by FT-IR and EDAX analysis. Membranes are characterized by FT-IR, XRD, SEM, AFM, contact angle, water uptake, ion-exchange capacity, proton conductivity, methanol permeability, TGA, mechanical and oxidative stability. Characterization results confirmed that the SPES/PDM nanocomposite membranes are better than bare SPES and Nafion-212 membranes possibly due to the interface electrostatic attraction between amine groups (-NH(2)and -NH-) of PDM with sulfonate (SO3-) group of SPES which create the strong acid-base pair. This result in the enhancement of the proton transport pathway in nanocomposite membranes and also the PDM reduces the methanol transport channels by generating the tortuous path. SPES/PDM-1 membrane exhibits the highest proton conductivity of 5.64 x 10(-3) Scm(-1), methanol resistivity of 2.23 x 10(8) cm(2)s(-1) and selectivity of 22 x 10(4)Scm(-3)s. SPES/PDM membranes are displayed better thermal, mechanical and oxidative stability probably due to the uniform distribution of PDM on SPES matrix as evidenced by SEM images. Overall results confirmed that the SPES/PDM membranes will be an alternate to expensive Nafion in clean energy DMFC devices.
机译:使用聚二胺层状钼二硫化物(PDM)纳米晶片制备磺化聚(醚砜)(SPES)膜。将剥离的钼二硫化物(E-MOS2)纳米晶片进行表面涂层,具有多巴胺的自聚合,并通过FT-IR和EDAX分析探测。膜的特征在于FT-IR,XRD,SEM,AFM,接触角,水吸收,离子交换能力,质子电导率,甲醇渗透性,TGA,机械和氧化稳定性。表征结果证实,由于胺基(-NH(2)和-NH-)与磺酸盐(SO 3-)基团的α静电吸引,SPES / PDM纳米复合膜优于裸露的SPES和Nafion-212膜。产生强酸碱对的侧面。这导致纳米复合膜中质子传输途径的增强,并且PDM通过产生曲折路径来减少甲醇输送通道。 SPES / PDM-1膜具有5.64×10(-3)SCM(-1),甲醇电阻率的最高质子电导率为2.23×10(8)厘米(2)厘米(2)厘米(-1),选择性为22×10( 4)SCM(-3)s。 SPES / PDM膜显示出更好的热,机械和氧化稳定性,可能是由于SEM图像所证明的PDM对SPES矩阵的均匀分布。总体结果证实,SPES / PDM膜将是清洁能源DMFC器件中的昂贵的Nafion。

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