New approach developed for electrocatalytic H₂O₂ production and biomass upgrading
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New approach developed for electrocatalytic H₂O₂ production and biomass upgrading
the researchers used, bacterial cellulose as an adsorption regulator, and carbon source in combination with a multi-step approach, involving wet chemical impregnation, pyrolysis, and acid etching processes to create a catalyst, termed FeSAs/ACs-bacterial cellulose-derived carbon (BCC), consisting of oxygen-coordinated Fe single, atoms (SAs) and atom clusters (ACs)
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New approach developed for electrocatalytic H₂O₂ production
and biomass upgrading
Science News
GOLAHURA
the researchers used
bacterial cellulose as an adsorption regulator
and carbon source in combination with a multi-step approach
involving wet chemical impregnation
pyrolysis
and acid etching processes to create a catalyst
termed FeSAs/ACs-bacterial cellulose-derived carbon (BCC)
consisting of oxygen-coordinated Fe single
atoms (SAs) and atom clusters (ACs)

