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Results 51-60 of 124 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2021Tailoring acidic oxygen reduction selectivity on single-atom catalysts via modification of first and second coordination spheresTang, C.; Chen, L.; Li, H.; Li, L.; Jiao, Y.; Zheng, Y.; Xu, H.; Davey, K.; Qiao, S.
2015Advancing the electrochemistry of the hydrogen-evolution reaction through combining experiment and theoryZheng, Y.; Jiao, Y.; Jaroniec, M.; Qiao, S.
2018Polydopamine-derived, in situ N-Doped 3D mesoporous carbons for highly efficient oxygen reductionQu, K.; Wang, Y.; Zhang, X.; Chen, H.; Li, H.; Chen, B.; Zhou, H.; Li, D.; Zheng, Y.; Dai, S.
2015Engineering of carbon-based electrocatalysts for emerging energy conversion: from fundamentality to functionalityZheng, Y.; Jiao, Y.; Qiao, S.
2016Highly active nickel-cobalt/nanocarbon thin films as efficient water splitting electrodesBayatsarmadi, B.; Zheng, Y.; Russo, V.; Ge, L.; Casari, C.; Qiao, S.
2021Nickel ferrocyanide as a high-performance urea oxidation electrocatalystGeng, S.K.; Zheng, Y.; Li, S.Q.; Su, H.; Zhao, X.; Hu, J.; Shu, H.B.; Jaroniec, M.; Chen, P.; Liu, Q.H.; Qiao, S.Z.
2023Plasma-electrified up-carbonization for low-carbon clean energyZhou, R.; Zhao, Y.; Zhou, R.; Zhang, T.; Cullen, P.; Zheng, Y.; Dai, L.; Ostrikov, K.
2023Triple-atom catalysts for one-step N–C–N coupling toward urea synthesis: A DFT studyChen, L.; Tang, C.; Zheng, Y.; Davey, K.; Jiao, Y.
2023Direct seawater electrolysis by adjusting the local reaction environment of a catalystGuo, J.; Zheng, Y.; Hu, Z.; Zheng, C.; Mao, J.; Du, K.; Jaroniec, M.; Qiao, S.Z.; Ling, T.
2022C₃ production from CO₂ reduction by concerted *CO trimerization on a single-atom alloy catalystChen, L.; Tang, C.; Zheng, Y.; Skúlason, E.; Jiao, Y.