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具有用于高电流密度水分解的电纺结的独立式双极膜。

Freestanding Bipolar Membranes with an Electrospun Junction for High Current Density Water Splitting.

作者信息

Powers Devon, Mondal Abhishek N, Yang Zezhou, Wycisk Ryszard, Kreidler Eric, Pintauro Peter N

机构信息

Department of Chemical and Biomolecular Engineering, Vanderbilt University, Nashville, Tennessee 37235, United States.

Honda R&D Americas, LLC, Raymond, Ohio 43067, United States.

出版信息

ACS Appl Mater Interfaces. 2022 Aug 10;14(31):36092-36104. doi: 10.1021/acsami.2c07680. Epub 2022 Jul 29.

Abstract

Freestanding bipolar membranes (BPMs) with an extended-area water splitting junction were fabricated utilizing electrospinning. The junction layer was composed of a mixed fiber mat that was made by concurrently electrospinning sulfonated poly(ether ether ketone) (SPEEK) and quaternized poly(phenylene oxide) (QPPO), with water splitting catalyst nanoparticles intermittently deposited between the fibers. The mat was sandwiched between solution cast SPEEK and QPPO films and hot-pressed to form a dense trilayer BPM with an extended-area junction of finite thickness, composed of QPPO nanofibers embedded in a SPEEK matrix with the catalyst nanoparticles interspaced between the two polymers. The composition, ion-exchange capacity, and catalyst type/loading in the junction were varied, and the water splitting characteristics of the membranes were assessed. The best BPMs fabricated in this work employed a graphene oxide catalyst and exhibited a low trans-membrane voltage drop of about 0.82 V at 1000 mA/cm in water splitting experiments with 0.5 M NaSO and stable water splitting operation for 60 h at 800 mA/cm.

摘要

利用静电纺丝制备了具有扩展面积析氢结的独立式双极膜(BPM)。结层由混合纤维毡组成,该纤维毡通过同时静电纺丝磺化聚醚醚酮(SPEEK)和季铵化聚苯醚(QPPO)制成,析氢催化剂纳米颗粒间歇地沉积在纤维之间。该纤维毡夹在溶液浇铸的SPEEK和QPPO薄膜之间,并进行热压,以形成具有有限厚度扩展面积结的致密三层BPM,该结由嵌入SPEEK基质中的QPPO纳米纤维组成,催化剂纳米颗粒间隔在两种聚合物之间。改变结中的组成、离子交换容量和催化剂类型/负载量,并评估膜的析氢特性。在这项工作中制备的最佳BPM采用氧化石墨烯催化剂,在0.5M NaSO的析氢实验中,在1000mA/cm²时表现出约0.82V的低跨膜电压降,并在800mA/cm²下稳定析氢运行60小时。

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