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Results 1-10 of 12 (Search time: 0.005 seconds).
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PreviewIssue DateTitleAuthor(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.; Ang, H.; Wang, S.
2018Bread-making synthesis of hierarchically Co@C nanoarchitecture in heteroatom doped porous carbons for oxidative degradation of emerging contaminantsTian, W.; Zhang, H.; Qian, Z.; Ouyang, T.; Sun, H.; Qin, J.; Tadé, M.; Wang, S.
2017Template-free synthesis of N-doped carbon with pillared-layered pores as bifunctional materials for supercapacitor and environmental applicationsTian, W.; Zhang, H.; Sun, H.; Tadé, M.; Wang, S.
20180D (MoS₂)/2D (g-C₃N₄) heterojunctions in Z-scheme for enhancedphotocatalytic and electrochemical hydrogen evolutionLiu, Y.; Zhang, H.; Ke, J.; Zhang, J.; Tian, W.; Xu, X.; Duan, X.; Sun, H.; O Tade, M.; 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.; Sun, H.
2018Heterostructured WO₃@CoWO₄ bilayer nanosheets for enhanced visible-light photo, electro and photoelectro-chemical oxidation of waterZhang, H.; Tian, W.; Li, Y.; Sun, H.; Tadé, M.; Wang, S.
2016Flower-like cobalt hydroxide/oxide on graphitic carbon nitride for visible-light-driven water oxidationZhang, H.; Tian, W.; Guo, X.; Zhou, L.; Sun, H.; Tadé, M.; 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.
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.
2018One-step synthesis of flour-derived functional nanocarbons with hierarchical pores for versatile environmental applicationsTian, W.; Zhang, H.; Sun, H.; Tadé, M.; Wang, S.