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Results 1-10 of 11 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2017Scalable self-supported graphene foam for high-performance electrocatalytic oxygen evolutionZhu, Y.; Ran, J.; Qiao, S.
2019Engineering 2D metal-organic framework/MoS₂ interface for enhanced alkaline hydrogen evolutionZhu, D.; Liu, J.; Zhao, Y.; Zheng, Y.; Qiao, S.Z.
2019Nitrogen vacancies on 2D layered W₂N₃: a stable and efficient active site for nitrogen reduction reactionJin, H.; Li, L.; Liu, X.; Tang, C.; Xu, W.; Chen, S.; Song, L.; Zheng, Y.; Qiao, S.Z.
2015Advancing the electrochemistry of the hydrogen-evolution reaction through combining experiment and theoryZheng, Y.; Jiao, Y.; Jaroniec, M.; Qiao, S.
2022Cation-Vacancy-Enriched Nickel Phosphide for Efficient Electrosynthesis of Hydrogen PeroxidesZhou, Z.; Kong, Y.; Tan, H.; Huang, Q.; Wang, C.; Pei, Z.; Wang, H.; Liu, Y.; Wang, Y.; Li, S.; Liao, X.; Yan, W.; Zhao, S.
2020A Flexible Rechargeable Zinc–Air Battery with Excellent Low-Temperature AdaptabilityPei, Z.; Yuan, Z.; Wang, C.; Zhao, S.; Fei, J.; Wei, L.; Chen, J.; Wang, C.; Qi, R.; Liu, Z.; Chen, Y.
2014Graphitic carbon nitride nanosheet-carbon nanotube three-dimensional porous composites as high-performance oxygen evolution electrocatalystsMa, T.; Dai, S.; Jaroniec, M.; Qiao, S.
2014Synthesis of highly active and stable spinel-type oxygen evolution electrocatalysts by a rapid inorganic self-templating methodMa, T.; Dai, S.; Jaroniec, M.; Qiao, S.
2022Unraveling the Catalyst-Solvent Interactions in Lean-Electrolyte Sulfur Reduction Electrocatalysis for Li-S BatteriesLi, H.; Rongwei, M.; Guo, Y.; Ye, C.; Kong, D.; Johannessen, B.; Jaroniec, M.; Qiao, S.
2017Atomically and electronically coupled Pt and CoO hybrid nanocatalysts for enhanced electrocatalytic performanceMeng, C.; Ling, T.; Ma, T.; Wang, H.; Hu, Z.; Zhou, Y.; Mao, J.; Du, X.; Jaroniec, M.; Qiao, S.