Co-Doped NiSe nanowires on nickel foam via a cation exchange approach as efficient electrocatalyst for enhanced oxygen evolution reaction YZ Xu, CZ Yuan, XP Chen RSC advances 6 (108), 106832-106836, 2016 | 48 | 2016 |
A facile strategy for the synthesis of NiSe@ CoOOH core-shell nanowires on nickel foam with high surface area as efficient electrocatalyst for oxygen evolution reaction YZ Xu, CZ Yuan, XP Chen Applied Surface Science 426, 688-693, 2017 | 39 | 2017 |
Understanding the synergy between Fe and Mo sites in the nitrate reduction reaction on a bio‐inspired bimetallic MXene electrocatalyst DF Abbott, YZ Xu, DA Kuznetsov, P Kumar, CR Müller, A Fedorov, ... Angewandte Chemie 135 (51), e202313746, 2023 | 36 | 2023 |
One-pot synthesis nickel sulfide/amorphous molybdenum sulfide nanosheets array on nickel foam as a robust oxygen evolution reaction electrocatalyst YZ Xu, CZ Yuan, XP Chen Journal of Solid State Chemistry 256, 124-129, 2017 | 23 | 2017 |
In situ synthesis of NiSe@ CoP core–shell nanowire arrays on nickel foam as a highly efficient and robust electrode for electrochemical hydrogen generation in both alkaline and … YZ Xu, CZ Yuan, ZW Liu, XP Chen Catalysis Science & Technology 8 (1), 128-133, 2018 | 16 | 2018 |
A Bio‐Inspired Dendritic MoOx Electrocatalyst for Efficient Electrochemical Nitrate Reduction to Ammonia YZ Xu, DF Abbott, RN Dürr, TN Huan, V Mougel Advanced Energy Materials 14 (37), 2402294, 2024 | 2 | 2024 |
A Bio‐Inspired Dendritic MoOx Electrocatalyst for Efficient Electrochemical Nitrate Reduction to Ammonia (Adv. Energy Mater. 37/2024) YZ Xu, DF Abbott, RN Dürr, TN Huan, V Mougel Advanced Energy Materials 14 (37), 2470160, 2024 | | 2024 |
Two-step Tandem Electrochemical Conversion of Oxalic Acid and Nitrate to Glycine YZ Xu, D Abbott, LN Poon, V Mougel | | 2024 |
A Bio-Inspired Dendritic MoO YZ Xu, DF Abbott, RN Dürr, TN Huan, V Mougel | | 2024 |
Efficient Electrochemical Conversion of Nitric Oxide to Ammonia Using a Porous Nickel Catalyst in a Membrane Electrode Assembly Electrolyzer ChemRxiv, 0 | | |