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基于氧化石墨烯/聚醚砜复合纳米纤维的阳离子交换膜的制备与性能评估

Fabrication and Performance Evaluation of a Cation Exchange Membrane Using Graphene Oxide/Polyethersulfone Composite Nanofibers.

作者信息

Kim Suhun, Alayande Abayomi Babatunde, Eisa Tasnim, Jang Jaewon, Kang Yesol, Yang Euntae, Hwang Moon-Hyun, Kim In S, Chae Kyu-Jung

机构信息

Department of Environmental Engineering, College of Ocean Science and Engineering, Korea Maritime and Ocean University, Busan 49112, Republic of Korea.

Department of Marine Environmental Engineering, Gyeongsang National University, Tongyoung 53064, Republic of Korea.

出版信息

Membranes (Basel). 2023 Jun 29;13(7):633. doi: 10.3390/membranes13070633.

Abstract

Ion exchange membranes, especially cation exchange membranes (CEMs), are an important component in membrane-based energy generation and storage because of their ability to transport cations via the electrochemical potential gradient while preventing electron transport. However, developing a CEM with low areal resistance, high permselectivity, and stability remains difficult. In this study, electrospun graphene oxide/polyethersulfone (GO/PES) composite nanofibers were prepared with varying concentrations of GO. To fabricate a CEM, the pores of the electrospun GO/PES nanofiber substrates were filled with a Nafion ionomer. The pore-filled PES nanofiber loaded with 1% GO revealed a noticeable improvement in hydrophilicity, structural morphology, and mechanical properties. The 1% GO/PES pore-filled CEM was compared to a Nafion membrane of a varying thickness and without a nanofiber substrate. The CEM with a nanofiber substrate showed permselectivity of 85.75%, toughness of 111 J/m, and areal resistance of 3.7 Ω cm, which were 12.8%, 4.3 times, and 4.0 times better, respectively, than those of the Nafion membrane at the same thickness. The development of a reinforced concrete-like GO/PES nanofiber structure containing stretchable ionomer-enhanced membrane surfaces exhibited suitable areal resistance and reduced the thickness of the composite membrane without compromising the mechanical strength, suggesting its potential application as a cation exchange membrane in electrochemical membrane-based systems.

摘要

离子交换膜,特别是阳离子交换膜(CEMs),是基于膜的能量产生和存储中的重要组成部分,因为它们能够通过电化学势梯度传输阳离子,同时阻止电子传输。然而,开发具有低面电阻、高选择性渗透性和稳定性的阳离子交换膜仍然很困难。在本研究中,制备了不同氧化石墨烯(GO)浓度的电纺氧化石墨烯/聚醚砜(GO/PES)复合纳米纤维。为了制造阳离子交换膜,用电纺GO/PES纳米纤维基材的孔隙填充了Nafion离聚物。负载1% GO的孔隙填充PES纳米纤维在亲水性、结构形态和机械性能方面有显著改善。将1% GO/PES孔隙填充阳离子交换膜与不同厚度且无纳米纤维基材的Nafion膜进行了比较。具有纳米纤维基材的阳离子交换膜的选择性渗透性为85.75%,韧性为111 J/m,面电阻为3.7 Ω·cm,在相同厚度下分别比Nafion膜好12.8%、4.3倍和4.0倍。含有可拉伸离聚物增强膜表面的类似钢筋混凝土的GO/PES纳米纤维结构的开发表现出合适的面电阻,并在不影响机械强度的情况下减小了复合膜的厚度,表明其在基于电化学膜的系统中作为阳离子交换膜的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc42/10383261/b4903eec1d31/membranes-13-00633-g001.jpg

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