Nafion公司
膜
反向电渗析
离聚物
材料科学
化学工程
离子交换
离子交换膜
电渗析
扩散
离子
化学
复合材料
聚合物
工程类
有机化学
电极
物理
电化学
共聚物
物理化学
热力学
生物化学
作者
Jaehoon Jung,Soyeong Choi,Il‐Suk Kang,Kiwoon Choi
出处
期刊:Nanomaterials
[Multidisciplinary Digital Publishing Institute]
日期:2024-03-06
卷期号:14 (5): 478-478
被引量:1
摘要
Exploring the utilization of ion exchange membranes (IEMs) in salinity gradient energy harvesting, a technique that capitalizes on the salinity difference between seawater and freshwater to generate electricity, this study focuses on optimizing PVDF to Nafion ratios to create ultra-thin membranes. Specifically, our investigation aligns with applications such as reverse electrodialysis (RED), where IEMs facilitate selective ion transport across salinity gradients. We demonstrate that membranes with reduced Nafion content, particularly the 50:50 PVDF:Nafion blend, retain high permselectivity comparable to those with higher Nafion content. This challenges traditional understandings of membrane design, highlighting a balance between thinness and durability for energy efficiency. Voltage–current analyses reveal that, despite lower conductivity, the 50:50 blend shows superior short-circuit current density under salinity gradient conditions. This is attributed to effective ion diffusion facilitated by the blend’s unique microstructure. These findings suggest that blended membranes are not only cost-effective but also exhibit enhanced performance for energy harvesting, making them promising candidates for sustainable energy solutions. Furthermore, these findings will pave the way for advances in membrane technology, offering new insights into the design and application of ion exchange membranes in renewable energy.
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