High Surface Area 3D Copper Nanowire Networks for High-Throughput Electrochemical CO2 Reduction
(odnośnik otworzy się w nowym oknie)
Autorzy:
Nina Plankensteiner [1,2], Stanley Bus [2,3], Anna Staerz [3], Cole Smith [4] and Philippe M. Vereecken [5]
Opublikowane w:
ECS Meeting Abstracts, 2022
Wydawca:
IOP Science
DOI:
10.1149/ma2022-0222928mtgabs
Regular nanopatterns and ordered high surface area nanostructures for CO2 reduction and water electrolysis
Autorzy:
Plankensteiner N., Kuna T., Galetova A., Staerz A., Rupp R., Steegstra P., John J., Vereecken P.M.
Opublikowane w:
EMRS Fall Meeting 2022 - Symposium Q, 2022
Wydawca:
EUROPEAN MATERIALS RESEARCH SOCIETY
Combining photovoltaics and anion-exchange membrane water electrolysis with high surface area nickel nanomesh electrodes for low-cost green hydrogen
Autorzy:
Plankensteiner, N.; Govaerts, J.; Rupp. R, Singh, S.; Poortmans, J.; Vereecken, P.M. John, J.
Opublikowane w:
Advances in inorganic thin film semiconductors for solar energy conversion: From photovoltaics to solar fuels, 2023
Wydawca:
Fundació de la comunitat valenciana SCITO
Ordered interconnected Cu nanowire networks as high surface area catalysts for the electrochemical CO2 reduction
Autorzy:
Plankensteiner N. , Andrenacci S., Vereecken P.M
Opublikowane w:
EMRS 2021Fall Meeting, 2021
Wydawca:
EUROPEAN MATERIALS RESEARCH SOCIETY