阳极
电解
材料科学
膜
离子交换
化学工程
离子
废物管理
化学
电极
工程类
有机化学
电解质
生物化学
物理化学
作者
Sung Jun Lee,Hyun Soo Jin,Baek San Soh,Bong Kyun Kang,Brajendra Mishra,Yoo Sei Park
出处
期刊:Small
[Wiley]
日期:2024-12-20
标识
DOI:10.1002/smll.202409299
摘要
Abstract As the energy industries, such as secondary batteries and fuel cells, expand rapidly, the demand for transition metals used as electrode materials is increasing, which has led to a rise in their prices. One promising strategy to address these challenges is upcycling, which involves recycling transition metal‐based waste from various industries. In this study, a heterostructure electrocatalyst for anion exchange membrane water electrolysis is developed by upcycling iron‐based waste from the automotive industry. The iron‐based swarf is converted into single‐phase Fe 2 O 3 by removing surface impurities through calcination in air. Subsequently, NiFe‐LDH is formed via sequential hydrothermal synthesis, resulting in NiFe‐LDH/Fe 2 O 3 heterostructured electrocatalysts. The hetero‐interface between NiFe‐LDH and Fe 2 O 3 significantly reduced the electrochemical activation barrier, enhancing oxygen evolution reaction (OER) activity and, furthermore, achieving high‐performance AEMWE. This approach not only reduces waste but also provides a cost‐effective alternative to traditional materials, highlighting the potential for sustainable and efficient energy solutions.
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