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Results 11-20 of 72 (Search time: 0.003 seconds).
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PreviewIssue DateTitleAuthor(s)
2017Facile assembly of Bi₂O₃/Bi₂S₃/MoS₂ n-p heterojunction with layered n-Bi₂O₃ and p-MoS₂ for enhanced photocatalytic water oxidation and pollutant degradationKe, J.; Liu, J.; Sun, H.; Zhang, H.; Duan, X.; Liang, P.; Li, X.; Tade, M.; Liu, S.; Wang, S.
2017Metal-free hybrids of graphitic carbon nitride and nanodiamonds for photoelectrochemical and photocatalytic applicationsZhou, L.; Zhang, H.; Guo, X.; Sun, H.; Liu, S.; Tade, M.; Wang, S.
2016Nitrogen- and sulfur-codoped hierarchically porous carbon for adsorptive and oxidative removal of pharmaceutical contaminantsTian, W.; Zhang, H.; Duan, X.; Sun, H.; Tade, M.O.; Ang, H.M.; Wang, S.
2018Monodisperse Co₃O₄ quantum dots on porous carbon nitride nanosheets for enhanced visible-light-driven water oxidationZhang, H.; Tian, W.; Zhou, L.; Sun, H.; Tade, M.; Wang, S.
2016Egg-shaped core/shell α-Mn₂O₃@α-MnO₂ as heterogeneous catalysts for decomposition of phenolics in aqueous solutionsSaputra, E.; Zhang, H.; Liu, Q.; Sun, H.; Wang, S.
2017Three-dimensional BiOI/BiOX (X = Cl or Br) nanohybrids for enhanced visible-light photocatalytic activityLiu, Y.; Xu, J.; Wang, L.; Zhang, H.; Xu, P.; Duan, X.; Sun, H.; Wang, S.
2016Heteroatom (N or N-S)-doping induced layered and honeycomb microstructures of porous carbons for CO₂ capture and energy applicationsTian, W.; Zhang, H.; Sun, H.; Suvorova, A.; Saunders, M.; Tade, M.; Wang, 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.
2019Facile synthesis of Co-N-rGO composites as an excellent electrocatalyst for oxygen reduction reactionZhai, L.F.; Kong, S.Y.; Zhang, H.; Tian, W.; Sun, M.; Sun, H.; Wang, S.
2018Co@C/CoOx coupled with N-doped layer-structured carbons for excellent CO₂ capture and oxygen reduction reactionZhang, H.; Tian, W.; Qian, Z.; Ouyang, T.; Saunders, M.; Qin, J.; Wang, S.; Tadé, M.O.; Sun, H.