| 注册
首页|期刊导航|物理化学学报|自支撑过渡金属海水电解析氧催化剂研究进展

自支撑过渡金属海水电解析氧催化剂研究进展

吴倩 应斌武 罗永嵩 孙圣钧 刘倩 Mohamed S.Hamdy 孙旭平 高庆平 单彬 王文政 齐玉萍 台夕市 王霞 郑冬冬 严虹

物理化学学报2023,Vol.39Issue(12):63-78,16.
物理化学学报2023,Vol.39Issue(12):63-78,16.DOI:10.3866/PKU.WHXB202303012

自支撑过渡金属海水电解析氧催化剂研究进展

Recent Advances in Self-Supported Transition-Metal-Based Electrocatalysts for Seawater Oxidation

吴倩 1应斌武 2罗永嵩 2孙圣钧 3刘倩 4Mohamed S.Hamdy 5孙旭平 6高庆平 7单彬 7王文政 7齐玉萍 1台夕市 1王霞 1郑冬冬 2严虹2

作者信息

  • 1. 潍坊学院化学化工与环境工程学院,山东潍坊 261061
  • 2. 电子科技大学基础与前沿研究院,成都 610054
  • 3. 山东师范大学化学化工与材料科学学院,济南 250014
  • 4. 成都大学高等研究院,成都 610106
  • 5. 哈立德国王大学理学院化学系催化研究课题组,阿卜哈61413
  • 6. 电子科技大学基础与前沿研究院,成都 610054||山东师范大学化学化工与材料科学学院,济南 250014
  • 7. 潍坊职业学院化学工程学院,山东潍坊 262737
  • 折叠

摘要

Abstract

Seawater electrolysis is a promising and sustainable technology for green hydrogen production.However,some disadvantages include sluggish kinetics,competitive chlorine evolution reaction at the anode,chloride ion corrosion,and surface poisoning,which has led to a decline in activity and durability and low oxygen evolution reaction(OER)selectivity of the anodic electrodes.Benefiting from the lower interface resistance,larger active surface,and superior stability,the self-supported nanoarrays have emerged as advanced catalysts compared to conventional powder catalysts.Self-supported catalysts have more advantages than powder catalysts,particularly in practical large-scale hydrogen production applications requiring high current density.During electrolysis,due to the influx of bubbles generated on the electrode surface,the powdered nanomaterial is peeled off easily,resulting in reduced catalytic activity and even frequent replacement of the catalyst.In contrast,self-supported nanoarray possessing strong adhesion between the active species and the substrates ensures good electronic conductivity and high mechanical stability,which is conducive to long-term use and recycling.This minireview summarizes the recent progress of self-supported transition-metal-based catalysts for seawater oxidation,including(oxy)hydroxides,nitrides,phosphides,and chalcogenides,emphasizing the strategies in response to the corrosion and competitive reactions to ensure high activity and selectivity in OER processes.In general,constructing three-dimensional porous nanostructures with high porosity and roughness can enlarge the surface areas to expose more active sites for oxygen evolution,which is an efficient strategy for improving mass transfer and catalytic efficiency.Furthermore,the Cl-barrier layer on the surface of catalyst,particularly that with both catalytic activity and protection,can effectively inhibit the competitive oxidation and corrosion of Cl-,thereby delivering enhanced catalytic activity,selectivity,and stability of the catalysts.Moreover,developing super hydrophilic and hydrophobic surfaces is a promising strategy to increase the permeability of electrolytes and avoid the accumulation of large amounts of bubbles on the surface of the self-supported electrodes,thus promoting the effective utilization of active sites.Finally,perspectives and suggestions for future research in OER catalysts for seawater electrolysis are provided.In particular,the medium for seawater electrolysis should be transferred from simulated saline water to natural seawater.Considering the challenges faced in natural seawater splitting,in addition to designing and synthesizing self-supported catalysts with high activities,selectivity,and stability,developing simple and low-cost natural seawater pretreatment technologies to minimize corrosion and poisoning issues is also an important topic for the future development of seawater electrolysis.More importantly,a standardized,feasible evaluation system for self-supported electrocatalysts should be established.In addition,factors such as the intrinsic activity,density of accessible active sites,size,mass loading,substrate effects,and test conditions of the catalyst should be fully considered.

关键词

海水电解/自支撑阵列/过渡金属催化剂/抗腐蚀/析氧反应

Key words

Seawater electrolysis/Self-supported nanoarray/Transition metal-based catalyst/Anti-corrosion/Oxygen evolution reaction

分类

化学

引用本文复制引用

吴倩,应斌武,罗永嵩,孙圣钧,刘倩,Mohamed S.Hamdy,孙旭平,高庆平,单彬,王文政,齐玉萍,台夕市,王霞,郑冬冬,严虹..自支撑过渡金属海水电解析氧催化剂研究进展[J].物理化学学报,2023,39(12):63-78,16.

基金项目

The authors extend their appreciation to the Deanship of Scientific Research at King Khalid University for funding support through Large Group Research Project(RGP2/199/44).哈立德国王大学大型团体研究项目(RGP2/199/44)资助 (RGP2/199/44)

物理化学学报

OACSCDCSTPCD

1000-6818

访问量0
|
下载量0
段落导航相关论文