联氨(抗抑郁剂)
析氧
海水
材料科学
催化作用
阳极
制氢
电解
纳米片
化学工程
电化学
电解水
电解质
纳米技术
化学
电极
有机化学
海洋学
工程类
地质学
物理化学
色谱法
作者
Zhipeng Yu,Gianluca D’Olimpio,Haoliang Huang,Chia‐Nung Kuo,C. S. Lue,Giuseppe Nicotra,Fei Lin,Danil W. Boukhvalov,Antonio Politano,Lifeng Liu
标识
DOI:10.1002/adfm.202403099
摘要
Abstract Seawater electrolysis (SWE) is proposed to be a promising approach to green hydrogen (H 2 ) production but its large‐scale deployment faces challenges because of the anodic competing chlorine evolution reaction (CER) and high energy consumption. To address these challenges, innovative hybrid SWE systems have recently emerged, able to mitigate the interference of CER and substantially reduce the electrical energy needed. Herein, the preparation of 2D layered PtTe nanosheets (e‐PtTe NSs) using the liquid‐phase exfoliation method is reported, which show outstanding electrocatalytic performance for the hydrogen evolution (HER), hydrazine oxidation (HzOR), and oxygen reduction reactions (ORR) in seawater. Using e‐PtTe NSs as trifunctional catalysts, two hybrid SWE systems are demonstrated: 1) a hydrazine‐assisted acid‐alkaline dual‐electrolyte seawater electrolyzer enabled by a bipolar membrane (BPM‐OHzSWE), which can simultaneously produce H 2 and generate electricity through harvesting the electrochemical neutralization energy and leveraging the advantage of the HzOR over the oxygen evolution reaction (OER) in terms of anodic potentials; 2) a hydrazine‐assisted SWE system powered by a direct hydrazine fuel cell (DHzFC), which can realize self‐powered H 2 production. These novel hybrid SWE systems show substantial promise for energy‐saving and cost‐effective production of H 2 from seawater.
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