Surface oxygen vacancy induced α-MnO2 nanofiber for highly efficient ozone elimination G Zhu, J Zhu, W Jiang, Z Zhang, J Wang, Y Zhu, Q Zhang Applied Catalysis B: Environmental 209, 729-737, 2017 | 420 | 2017 |
Tuning the K+ Concentration in the Tunnels of α-MnO2 To Increase the Content of Oxygen Vacancy for Ozone Elimination G Zhu, J Zhu, W Li, W Yao, R Zong, Y Zhu, Q Zhang Environmental science & technology 52 (15), 8684-8692, 2018 | 172 | 2018 |
Encapsulate α-MnO2 nanofiber within graphene layer to tune surface electronic structure for efficient ozone decomposition G Zhu, W Zhu, Y Lou, J Ma, W Yao, R Zong, Y Zhu Nature Communications 12 (1), 4152, 2021 | 126 | 2021 |
Three-dimensional photocatalysts with a network structure W Jiang, Y Zhu, G Zhu, Z Zhang, X Chen, W Yao Journal of Materials Chemistry A 5 (12), 5661-5679, 2017 | 108 | 2017 |
Photocatalysis-self-Fenton system with high-fluent degradation and high mineralization ability J Ma, K Wang, C Wang, X Chen, W Zhu, G Zhu, W Yao, Y Zhu Applied Catalysis B: Environmental 276, 119150, 2020 | 90 | 2020 |
Interface‐Engineered Ni(OH)2/β‐like FeOOH Electrocatalysts for Highly Efficient and Stable Oxygen Evolution Reaction K Zhu, W Luo, G Zhu, J Wang, Y Zhu, Z Zou, W Huang Chemistry–An Asian Journal 12 (20), 2720-2726, 2017 | 50 | 2017 |
Direct storage of holes in ultrathin Ni (OH) 2 on Fe 2 O 3 photoelectrodes for integrated solar charging battery-type supercapacitors K Zhu, G Zhu, J Wang, J Zhu, G Sun, Y Zhang, P Li, Y Zhu, W Luo, Z Zou, ... Journal of Materials Chemistry A 6 (43), 21360-21367, 2018 | 47 | 2018 |
Morphology‐Induced TiO2 Bandgap Change for Super Rapid Treatment of Dye Wastewater under Visible Light R Qu, N Liu, Y Chen, W Zhang, G Zhu, Q Zhang, L Feng Advanced Materials Technologies 2 (12), 1700125, 2017 | 14 | 2017 |
Direct storage of holes in ultrathin Ni (OH) ₂ on Fe₂O₃ photoelectrodes for integrated solar charging battery-type supercapacitors K Zhu, G Zhu, J Wang, J Zhu, G Sun, Y Zhang, P Li, Y Zhu, W Luo, Z Zou, ... | | 2018 |