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Roll-to-roll production of catalyst coated membranes for low-temperature electrolyzers

机译:用于低温电解器的催化剂涂覆膜的轧制生产

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This work demonstrates a roll-to-roll (R2R) process for direct coating of anode catalyst layers on a polymer electrolyte membrane for low-temperature water electrolysis. To develop this process, catalyst ink formulation, ink-membrane interactions, and coating quality were studied. The catalyst inks were a mixture of iridium oxide (IrO2) and Nafion in a water and alcohol dispersion medium. The type of alcohol (methanol, ethanol, propanols) and water-to-alcohol ratio were varied to determine their influence on membrane swelling, dispersion quality, and coatability. Small-scale coating samples were prepared to understand coating uniformity and formation of irregularities. Subsequently, two water/1-propanol ratios (90:10 and 75:25) were down-selected for R2R slot-die coating. The R2R catalyst-coated membrane (CCM) coating process increased catalyst layer production throughput by over 500x compared to our standard lab-scale spray coating. The CCMs obtained from this process were tested as single-cell membrane electrode assemblies. They exhibited a cell voltage of 1.91 V at a current density of 2 A/cm(2), which is comparable to spray-coated CCMs. In conclusion, the work presented here demonstrates a continuous, scalable manufacturing process that eliminates the need for the decal-transfer step typically used in CCM production.
机译:该工作证明了一种用于直接涂覆在聚合物电解质膜上的阳极催化剂层进行低温水电解的卷辊(R2R)方法。为了开发该方法,研究了催化剂油墨配方,墨水膜相互作用和涂层质量。催化剂油墨是氧化铱(IRO2)和水中的Nafion的混合物和醇分散介质。多种醇(甲醇,乙醇,丙醇)和水 - 醇比的类型,以确定它们对膜膨胀,分散质量和涂布性的影响。准备小刻度涂层样品以了解涂层均匀性和形成不规则性。随后,为R2R槽模涂层涂上两种水/ 1-丙醇比(90:10和75:25)。与我们的标准实验室级喷涂相比,R2R催化剂涂覆的膜(CCM)涂布工艺将催化剂层生产产量增加超过500倍。从该方法获得的CCM被测试为单细胞膜电极组件。它们在电流密度为2A / cm(2)的电池电压为1.91V,其与喷涂涂覆的CCM相当。总之,本文所呈现的工作演示了一种连续的可扩展制造过程,可以消除通常用于CCM生产中使用的截止步骤的需要。

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