Engineering Crystal Facet of α-MnO2 Nanowire for Highly Efficient Catalytic Oxidation of Carcinogenic Airborne Formaldehyde S Rong, P Zhang, F Liu, Y Yang ACS Catalysis 8 (4), 3435-3446, 2018 | 600 | 2018 |
Catalytic decomposition of gaseous ozone over manganese dioxides with different crystal structures J Jia, P Zhang, L Chen Applied Catalysis B: Environmental 189, 210-218, 2016 | 507 | 2016 |
The effect of manganese vacancy in birnessite-type MnO2 on room-temperature oxidation of formaldehyde in air J Wang, J Li, C Jiang, P Zhou, P Zhang, J Yu Applied Catalysis B: Environmental 204, 147-155, 2017 | 431 | 2017 |
Cerium modified birnessite-type MnO2 for gaseous formaldehyde oxidation at low temperature L Zhu, J Wang, S Rong, H Wang, P Zhang Applied Catalysis B: Environmental 211, 212-221, 2017 | 364 | 2017 |
Room-Temperature Oxidation of Formaldehyde by Layered Manganese Oxide: Effect of Water J Wang, P Zhang, J Li, C Jiang, R Yunus, J Kim Environmental science & technology 49 (20), 12372-12379, 2015 | 345 | 2015 |
A comparative study on decomposition of gaseous toluene by O 3/UV, TiO 2/UV and O 3/TiO 2/UV P Zhang, F Liang, G Yu, Q Chen, W Zhu Journal of Photochemistry and Photobiology A: Chemistry 156 (1), 189-194, 2003 | 291* | 2003 |
Efficient photocatalytic decomposition of perfluorooctanoic acid by indium oxide and its mechanism X Li, P Zhang, L Jin, T Shao, Z Li, J Cao Environmental science & technology 46 (10), 5528-5534, 2012 | 289 | 2012 |
Review on manganese dioxide for catalytic oxidation of airborne formaldehyde L Miao, J Wang, P Zhang Applied Surface Science 466, 441-453, 2019 | 269 | 2019 |
Review on design and evaluation of environmental photocatalysts X Li, J Xie, C Jiang, J Yu, P Zhang Frontiers of Environmental Science & Engineering 12 (5), 14, 2018 | 249 | 2018 |
Review on noble metal-based catalysts for formaldehyde oxidation at room temperature J Guo, C Lin, C Jiang, P Zhang Applied Surface Science 475, 237-255, 2019 | 244 | 2019 |
The effect of morphology of α-MnO 2 on catalytic decomposition of gaseous ozone J Jia, P Zhang, L Chen Catalysis Science & Technology 6 (15), 5841-5847, 2016 | 231 | 2016 |
Formaldehyde and volatile organic compound (VOC) emissions from particleboard: Identification of odorous compounds and effects of heat treatment C Jiang, D Li, P Zhang, J Li, J Wang, J Yu Building and Environment 117, 118-126, 2017 | 220 | 2017 |
MnO2 Framework for Instantaneous Mineralization of Carcinogenic Airborne Formaldehyde at Room Temperature S Rong, P Zhang, Y Yang, L Zhu, J Wang, F Liu ACS Catalysis 7 (2), 1057-1067, 2017 | 220 | 2017 |
Efficient removal of formaldehyde by nanosized gold on well-defined CeO2 nanorods at room temperature Q Xu, W Lei, X Li, X Qi, J Yu, G Liu, J Wang, P Zhang Environmental science & technology 48 (16), 9702-9708, 2014 | 220 | 2014 |
Photocatalytic decomposition of perfluorooctanoic acid (PFOA) by TiO 2 in the presence of oxalic acid Y Wang, P Zhang Journal of hazardous materials 192 (3), 1869-1875, 2011 | 215 | 2011 |
Ferric ion mediated photochemical decomposition of perfluorooctanoic acid (PFOA) by 254nm UV light Y Wang, P Zhang, G Pan, H Chen Journal of hazardous materials 160 (1), 181-186, 2008 | 213 | 2008 |
One-pot synthesis of atomically dispersed Pt on MnO2 for efficient catalytic decomposition of toluene at low temperatures H Zhang, S Sui, X Zheng, R Cao, P Zhang Applied Catalysis B: Environmental 257, 117878, 2019 | 210 | 2019 |
Photodegradation of perfluorooctanoic acid by 185 nm vacuum ultraviolet light J CHEN, P ZHANG, J LIU Journal of Environmental Sciences 19 (4), 387-390, 2007 | 195 | 2007 |
Layered birnessite-type MnO 2 with surface pits for enhanced catalytic formaldehyde oxidation activity J Wang, G Zhang, P Zhang Journal of Materials Chemistry A 5 (12), 5719-5725, 2017 | 192 | 2017 |
Different nanostructured In 2 O 3 for photocatalytic decomposition of perfluorooctanoic acid (PFOA) Z Li, P Zhang, T Shao, J Wang, L Jin, X Li Journal of hazardous materials 260, 40-46, 2013 | 182 | 2013 |