Fengkai Yang
Ruhr University Bochum
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Publication
Featured researches published by Fengkai Yang.
Chemsuschem | 2017
Fengkai Yang; Kirill Sliozberg; Ilya Sinev; Hendrik Antoni; Alexander Bähr; Kevin Ollegott; Wei Xia; Justus Masa; Wolfgang Grünert; Beatriz Roldan Cuenya; Wolfgang Schuhmann; Martin Muhler
Co-based layered double hydroxide (LDH) catalysts with Fe and Al contents in the range of 15 to 45 at % were synthesized by an efficient coprecipitation method. In these catalysts, Fe3+ or Al3+ ions play an essential role as trivalent species to stabilize the LDH structure. The obtained catalysts were characterized by a comprehensive combination of surface- and bulk-sensitive techniques and were evaluated for the oxygen evolution reaction (OER) on rotating disk electrodes. The OER activity decreased upon increasing the Al content for the Co- and Al-based LDH catalysts, whereas a synergistic effect in Co- and Fe-based LDHs was observed, which resulted in an optimal Fe content of 35 at %. This catalyst was spray-coated on Ni foam electrodes and showed very good stability in a flow-through cell with a potential of approximately 1.53 V at 10 mA cm-2 in 1 m KOH for at least 48 h.
Chemcatchem | 2015
Kunpeng Xie; Justus Masa; Edyta Madej; Fengkai Yang; Philipp Weide; Weiwen Dong; Martin Muhler; Wolfgang Schuhmann; Wei Xia
An efficient two‐step gas‐phase method was developed for the synthesis of Co3O4–MnO2–CNT hybrids used as electrocatalysts in the oxygen evolution reaction (OER). Spinel Co–Mn oxide was used for the catalytic growth of multiwalled carbon nanotubes (CNTs) and the amount of metal species remaining in the CNTs was adjusted by varying the growth time. Gas‐phase treatment in HNO3 vapor at 200 °C was performed to 1) open the CNTs, 2) oxidize encapsulated Co nanoparticles to Co3O4 as well as MnO nanoparticles to MnO2, and 3) to create oxygen functional groups on carbon. The hybrid demonstrated excellent OER activity and stability up to 37.5 h under alkaline conditions, with longer exposure to HNO3 vapor up to 72 h beneficial for improved electrocatalytic properties. The excellent OER performance can be assigned to the high oxidation states of the oxide nanoparticles, the strong electrical coupling between these oxides and the CNTs as well as favorable surface properties rendering the hybrids a promising alternative to noble metal based OER catalysts.
ACS Catalysis | 2014
Peirong Chen; Fengkai Yang; Aleksander Kostka; Wei Xia
ACS Catalysis | 2017
Peirong Chen; Abhishek Khetan; Fengkai Yang; Vadim Migunov; Philipp Weide; Sascha P. Stürmer; Penghu Guo; Kevin Kähler; Wei Xia; Joachim Mayer; Heinz Pitsch; Ulrich Simon; Martin Muhler
ChemElectroChem | 2016
Karina Elumeeva; Justus Masa; Frank Tietz; Fengkai Yang; Wei Xia; Martin Muhler; Wolfgang Schuhmann
Journal of Energy Chemistry | 2016
Kunpeng Xie; Wei Xia; Justus Masa; Fengkai Yang; Philipp Weide; Wolfgang Schuhmann; Martin Muhler
Journal of Energy Chemistry | 2015
Kunpeng Xie; Fengkai Yang; Petra Ebbinghaus; Andreas Erbe; Martin Muhler; Wei Xia
Electroanalysis | 2016
Fengkai Yang; Kirill Sliozberg; Hendrik Antoni; Wei Xia; Martin Muhler
ChemElectroChem | 2017
Fengkai Yang; Wei Xia; Artjom Maljusch; Justus Masa; Dirk Hollmann; Ilya Sinev; Beatriz Roldan Cuenya; Wolfgang Schuhmann; Martin Muhler
Journal of Catalysis | 2018
Fengkai Yang; Bin Hu; Wei Xia; Baoxiang Peng; Jianyi Shen; Martin Muhler