Composite Anion Exchange Membranes Containing a Long-Side Chain Ionomer and Exfoliated Lamellar Double Hydroxides.

IF 3.3 4区 工程技术 Q2 CHEMISTRY, PHYSICAL
Riccardo Narducci, Suanto Syahputra, Maria Luisa Di Vona, Philippe Knauth, Luca Pasquini
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引用次数: 0

Abstract

Anion Exchange Membranes (AEMs) are promising materials for electrochemical devices, such as fuel cells and electrolyzers. However, the main drawback of AEMs is their low durability in alkaline operating conditions. A possible solution is the use of composite ionomers containing inorganic fillers stable in a basic environment. In this work, composite anion exchange membranes are prepared from poly (2,6-dimethyl-1,4-phenylene oxide) with quaternary ammonium groups on long-side chains (PPO-LC) and exfoliated Mg/Al lamellar double hydroxide (LDH) as inorganic filler added in different percentages (2, 5, and 10%). The mechanical stiffness of the membranes increases significantly by the addition of exfoliated LDH up to 5%. The ionic conductivity is measured as a function of the temperature in fully humidified conditions and as a function of relative humidity (RH). The maximum conductivity is observed for 5% LDH. The average activation energy for conductivity amounts to 0.20 ± 0.01 eV in fully humidified conditions and >50% RH. Thermogravimetric analysis of membranes before and after alkaline degradation tests (2 M KOH @ 80 °C, 48 h) reveals that the sample with 5% LDH has improved stability (19% vs. 36% of degradation). The stability tests are also investigated, measuring the ionic conductivity and the water uptake. A protective effect of LDH on the alkaline degradation of quaternary ammonium groups is clearly evidenced and opens the way to the use of different compounds and exfoliation methods in the LDH family.

复合阴离子交换膜包含长侧链离聚体和剥离层状双氢氧化物。
阴离子交换膜(AEMs)是一种很有前途的电化学器件材料,如燃料电池和电解槽。然而,AEMs的主要缺点是其在碱性操作条件下的耐久性较低。一种可能的解决方案是使用含有在碱性环境中稳定的无机填料的复合离聚体。以聚(2,6-二甲基-1,4-苯基氧化物)为原料,在长侧链上加入季铵盐基团(PPO-LC),并以不同比例(2、5、10%)的脱壳Mg/Al层状双氢氧化物(LDH)作为无机填料制备复合阴离子交换膜。通过添加高达5%的去角质LDH,膜的机械刚度显着增加。在完全加湿的条件下,离子电导率作为温度的函数和相对湿度(RH)的函数来测量。在5% LDH时观察到最大电导率。在完全加湿和50% RH条件下,电导率的平均活化能为0.20±0.01 eV。在碱性降解测试(2 M KOH @ 80°C, 48 h)前后对膜进行热重分析表明,5% LDH的样品具有更好的稳定性(19%对36%的降解)。还研究了稳定性测试,测量了离子电导率和吸水性。LDH对季铵基碱性降解的保护作用得到了明确的证明,并为LDH家族中不同化合物和剥离方法的使用开辟了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Membranes
Membranes Chemical Engineering-Filtration and Separation
CiteScore
6.10
自引率
16.70%
发文量
1071
审稿时长
11 weeks
期刊介绍: Membranes (ISSN 2077-0375) is an international, peer-reviewed open access journal of separation science and technology. It publishes reviews, research articles, communications and technical notes. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. Full experimental and/or methodical details must be provided.
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