首页|期刊导航|绿色能源与环境(英文)|Ammonia synthesis and cracking:Thermocatalytic versus electrochemical approaches

Ammonia synthesis and cracking:Thermocatalytic versus electrochemical approachesOA

Ammonia synthesis and cracking:Thermocatalytic versus electrochemical approaches

Xue Ding;Sze Xing Tan;Lili Zhang;Jiajian Gao

Institute of Sustainability for Chemicals,Energy and Environment(ISCE2),Agency for Science,Technology and Research(A*STAR),1 Pesek Road,Jurong Island,Singapore,627833,SingaporeInstitute of Sustainability for Chemicals,Energy and Environment(ISCE2),Agency for Science,Technology and Research(A*STAR),1 Pesek Road,Jurong Island,Singapore,627833,SingaporeInstitute of Sustainability for Chemicals,Energy and Environment(ISCE2),Agency for Science,Technology and Research(A*STAR),1 Pesek Road,Jurong Island,Singapore,627833,SingaporeInstitute of Sustainability for Chemicals,Energy and Environment(ISCE2),Agency for Science,Technology and Research(A*STAR),1 Pesek Road,Jurong Island,Singapore,627833,Singapore||Centre for Hydrogen Innovations,National University of Singapore,E8,1 Engineering Drive 3,Singapore 117580,Singapore

Ammonia synthesis and crackingThermocatalysis vs.electrocatalysisRenewable hydrogen carriersSingle-atom and electride catalystsSustainable energy transitions

Ammonia synthesis and crackingThermocatalysis vs.electrocatalysisRenewable hydrogen carriersSingle-atom and electride catalystsSustainable energy transitions

《绿色能源与环境(英文)》 2026 (3)

603-629,27

This research is supported by the Centre for Hydrogen Innovations(CHI Award No:CHI-P2024-04).Any opinions,findings and conclusions or recommendations expressed in this material are those of the authors and do not reflect the views of Centre for Hydrogen Innovations.

10.1016/j.gee.2025.12.018

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