• openAccess   An artificial leaf device built with earth-abundant materials for combined H-2 production and storage as formate with efficiency > 10% 

      Ampelli, Claudio; Giusi, Daniele; Miceli, Matteo; Merdzhanova, Tsvetelina; Smirnov, Vladimir; Chime, Ugochi; Astakhov, Oleksandr; Martín, Antonio José; Veenstra, Florentine; Garcés Pineda, Felipe Andrés; González-Cobos, Jesús; García-Tecedor, Miguel; Gimenez, Sixto; Jaegermann, Wolfram; Centi, Gabriele; Pérez-Ramírez, Javier; Galan-Mascaros, Jose Ramon; Perathoner, Siglinda Royal Society of Chemistry (2023-02-15)
      A major challenge for achieving energy transition and transforming the current energy model into distributed production is the development of efficient artificial leaf-type devices capable of directly converting carbon ...
    • closedAccess   Push-PullElectronicEffectsin Surface-ActiveSites EnhanceElectrocatalyticOxygenEvolutionon TransitionMetalOxides 

      Garcés Pineda, Felipe Andrés; Nguyen, Huu Chuong; Blasco Ahicart, Marta; García-Tecedor, Miguel; de fez febre, mabel; Tang, PengYi; Arbiol, Jordi; Gimenez, Sixto; Galan-Mascaros, Jose Ramon; Lopez, Nuria Wiley (2021-01-19)
      Sustainable electrocatalysis of the oxygen evolution reaction (OER) constitutes a major challenge for the realization of green fuels. Oxides based on Ni and Fe in alkaline media have been proposed to avoid using critical ...
    • openAccess   Sustainable oxygen evolution electrocatalysis in aqueous 1 M H2SO4 with earth abundant nanostructured Co3O4 

      Yu, Jiahao; Garcés Pineda, Felipe Andrés; González-Cobos, Jesús; Peña-Díaz, Marina; Rogero, Celia; Gimenez, Sixto; Spadaro, Maria Chiara; Arbiol, Jordi; Barja, Sara; Galan-Mascaros, Jose Ramon Nature Research (2022-07-27)
      Earth-abundant electrocatalysts for the oxygen evolution reaction (OER) able to work in acidic working conditions are elusive. While many first-row transition metal oxides are competitive in alkaline media, most of them ...