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Results 11-20 of 29 (Search time: 0.002 seconds).
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PreviewIssue DateTitleAuthor(s)
2017Facile synthesis of nitrogen-doped graphene via low-temperature pyrolysis: The effects of precursors and annealing ambience on metal-free catalytic oxidationLi, D.; Duan, X.; Sun, H.; Kang, J.; Zhang, H.; Tade, M.; Wang, S.
2017Disordered atomic packing structure of metallic glass: toward ultrafast hydroxyl radicals production rate and strong electron transfer ability in catalytic performanceJia, Z.; Duan, X.; Qin, P.; Zhang, W.; Wang, W.; Yang, C.; Sun, H.; Wang, S.; Zhang, L.
2015Low temperature combustion synthesis of nitrogen-doped graphene for metal-free catalytic oxidationIndrawirawan, S.; Sun, H.; Duan, X.; Wang, S.
2017Preparation of a p-n heterojunction BiFeO₃@TiO₂ photocatalyst with a core-shell structure for visible-light photocatalytic degradationLiu, Y.; Ding, S.; Xu, J.; Zhang, H.; Yang, S.; Duan, X.; Sun, H.; Wang, S.
2016Activation of peroxymonosulfate by carbonaceous oxygen groups: experimental and density functional theory calculationsWang, Y.; Ao, Z.; Sun, H.; Duan, X.; Wang, S.
2015Nanocarbons in different structural dimensions (0-3D) for phenol adsorption and metal-free catalytic oxidationIndrawirawan, S.; Sun, H.; Duan, X.; Wang, S.
2017UV-assisted construction of 3D hierarchical rGO/Bi₂MoO₆ composites for enhanced photocatalytic water oxidationKe, J.; Duan, X.; Luo, S.; Zhang, H.; Sun, H.; Liu, J.; Tade, M.; Wang, S.
2017An insight into metal organic framework derived N-doped graphene for the oxidative degradation of persistent contaminants: formation mechanism and generation of singlet oxygen from peroxymonosulfateLiang, P.; Zhang, C.; Duan, X.; Sun, H.; Liu, S.; Tade, M.O.; Wang, S.
2016Size-tailored porous spheres of manganese oxides for catalytic oxidation via peroxymonosulfate activationLiu, Q.; Duan, X.; Sun, H.; Wang, Y.; Tade, M.; Wang, S.
2015Insights into N-doping in single-walled carbon nanotubes for enhanced activation of superoxides: a mechanistic studyDuan, X.; Ao, Z.; Sun, H.; Zhou, L.; Wang, G.; Wang, S.