Reducing Critical Raw Material Use in Commercial Solid Oxide Fuel Cells Using Vertically Aligned Thin-Film Cathodes with Enhanced Long-Term Stability
Matthew P.Wells Kosova Kreka Mohana V.Kante Miriam Botros Ozden Celikbilek Jan Pieter Ouweltjes Federico Baiutti Simon M.Fairclough Caterina Ducati Albert Tarancon Judith L.MacManus-Driscoll
Reducing Critical Raw Material Use in Commercial Solid Oxide Fuel Cells Using Vertically Aligned Thin-Film Cathodes with Enhanced Long-Term Stability
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关键词
solid oxide fuel cells/thin films/vertically aligned nanocomposites分类
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Matthew P.Wells,Kosova Kreka,Mohana V.Kante,Miriam Botros,Ozden Celikbilek,Jan Pieter Ouweltjes,Federico Baiutti,Simon M.Fairclough,Caterina Ducati,Albert Tarancon,Judith L.MacManus-Driscoll..Reducing Critical Raw Material Use in Commercial Solid Oxide Fuel Cells Using Vertically Aligned Thin-Film Cathodes with Enhanced Long-Term Stability[J].Energy & Environmental Materials,2025,8(4):P.289-295,7.基金项目
support from the Royal Academy of Engineering Chair in Emerging technologies(grant number CIET1819_24) (grant number CIET1819_24)
the EPSRC Centre of Advanced Materials for Integrated Energy Systems(CAM-IES)(grant number EP/P007767/1) (CAM-IES)
the EU-H2020-ERC-ADG EROS(grant number 882929) (grant number 882929)
support provided by Deutsche Forschungsgemeinschaft(Project no.424789449,grant no.HA1344-45-1) (Project no.424789449,grant no.HA1344-45-1)
support from the European Union’s Horizon 2020 research and innovation program under the Marie Sklodowska-Curie grant agreement no.836503.We acknowledge use of the Thermo Fisher Spectra 300 TEM at the Wolfson Electron Microscopy Suite at the University of Cambridge funded by EPSRC under grant EP/R008779/1. ()