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PreviewIssue DateTitleAuthor(s)
2019Understanding the roadmap for electrochemical reduction of CO₂ to multi-carbon oxygenates and hydrocarbons on copper-based catalystsZheng, Y.; Vasileff, A.; Zhou, X.; Jiao, Y.; Jaroniec, M.; Qiao, S.Z.
2017Molecular scaffolding strategy with synergistic active centers to facilitate electrocatalytic CO₂ reduction to hydrocarbon/alcoholJiao, Y.; Zheng, Y.; Chen, P.; Jaroniec, M.; Qiao, S.
2019Building up a picture of the electrocatalytic nitrogen reduction activity of transition metal single-atom catalystsLiu, X.; Jiao, Y.; Zheng, Y.; Jaroniec, M.; Qiao, S.Z.
2019Syngas production from electrocatalytic CO₂ reduction with high energetic efficiency and current densityChen, P.; Jiao, Y.; Zhu, Y.H.; Chen, S.M.; Song, L.; Jaroniec, M.; 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.
2014Origin of the electrocatalytic oxygen reduction activity of graphene-based catalysts: a roadmap to achieve the best performanceJiao, Y.; Zheng, Y.; Jaroniec, M.; Qiao, S.
2012Nanostructured metal-free electrochemical catalysts for highly efficient oxygen reductionZheng, Y.; Jiao, Y.; Jaroniec, M.; Jin, Y.; Qiao, S.
2013Two-step boron and nitrogen doping in graphene for enhanced synergistic catalysisZheng, Y.; Jiao, Y.; Ge, L.; Jaroniec, M.; Qiao, S.
2015Design of electrocatalysts for oxygen- and hydrogen-involving energy conversion reactionsJiao, Y.; Zheng, Y.; Jaroniec, M.; Qiao, S.
2014Toward design of synergistically active carbon-based catalysts for electrocatalytic hydrogen evolutionZheng, Y.; Jiao, Y.; Li, L.; Xing, T.; Chen, Y.; Jaroniec, M.; Qiao, S.