Mesoporous MoO3-x material as an efficient electrocatalyst for hydrogen evolution reactions Z Luo Advanced Energy Materials, 2016 | 452 | 2016 |
Mesoporous iron sulfide for highly efficient electrocatalytic hydrogen evolution R Miao, B Dutta, S Sahoo, J He, W Zhong, SA Cetegen, T Jiang, SP Alpay, ... Journal of the American Chemical Society 139 (39), 13604-13607, 2017 | 322 | 2017 |
Mesoporous TiO2 modified with carbon quantum dots as a high-performance visible light photocatalyst R Miao Applied Catalysis B: Environmental 189, 26-38, 2016 | 255 | 2016 |
Reduced Graphene Oxide Supported Nickel–Manganese–Cobalt Spinel Ternary Oxide Nanocomposites and Their Chemically Converted Sulfide Nanocomposites as Efficient Electrocatalysts … R Miao ACS Catalysis 7 (1), 819–832, 2017 | 115 | 2017 |
Hierarchical Mesoporous NiO/MnO2@PANI Core–Shell Microspheres, Highly Efficient and Stable Bifunctional Electrocatalysts for Oxygen Evolution and Reduction … J He, M Wang, W Wang, R Miao, W Zhong, SY Chen, S Poges, T Jafari, ... ACS applied materials & interfaces 9 (49), 42676-42687, 2017 | 108 | 2017 |
Mechanism studies on methyl orange dye degradation by perovskite-type LaNiO3-δ under dark ambient conditions W Zhong, T Jiang, Y Dang, J He, SY Chen, CH Kuo, D Kriz, Y Meng, ... Applied Catalysis A: General 549, 302-309, 2018 | 100 | 2018 |
Au–carbon electronic interaction mediated selective oxidation of styrene B Liu, P Wang, A Lopes, L Jin, W Zhong, Y Pei, SL Suib, J He ACS Catalysis 7 (5), 3483-3488, 2017 | 96 | 2017 |
Synthesis of mesoporous iron oxides by an inverse micelle method and their application in the degradation of orange II under visible light at neutral pH T Jiang The Journal of Physical Chemistry C 119 (19), 10454–10468, 2015 | 92 | 2015 |
Sensitive and Selective NH3 Monitoring at Room Temperature Using ZnO Ceramic Nanofibers Decorated with Poly(styrene sulfonate) RS Andre, D Kwak, Q Dong, W Zhong, DS Correa, LHC Mattoso, Y Lei Sensors 18 (4), 1058, 2018 | 59 | 2018 |
Siloxane D4 adsorption by mesoporous aluminosilicates T Jiang Chemical Engineering Journal 289, 356-364, 2016 | 58 | 2016 |
“Self-heating” enabled one-pot synthesis of fluorescent carbon dots X Ma, W Zhong, J Zhao, SL Suib, Y Lei Engineered Science 9, 2019 | 42 | 2019 |
TiO2 Supported gold–palladium catalyst for effective syngas production from methane partial oxidation Z Luo, DA Kriz, R Miao, CH Kuo, W Zhong, C Guild, J He, B Willis, Y Dang, ... Applied Catalysis A: General 554, 54-63, 2018 | 42 | 2018 |
Modified mesoporous silica for efficient siloxane capture T Jafari Langmuir, 2016 | 39 | 2016 |
Ultrafine and Ligand‐Free Precious Metal (Ru, Ag, Au, Rh and Pd) Nanoclusters Supported on Phosphorus‐Doped Carbon B Liu, L Jin, W Zhong, A Lopes, SL Suib, J He Chemistry–A European Journal 24 (11), 2565-2569, 2018 | 33 | 2018 |
Electrochemical and surface-plasmon correlation of a serum-autoantibody immunoassay with binding insights: Graphenyl surface versus mercapto-monolayer surface G Premaratne, J Niroula, MK Patel, W Zhong, SL Suib, AK Kalkan, ... Analytical chemistry 90 (21), 12456-12463, 2018 | 29 | 2018 |
Synthesis of mesoporous γ-Fe2O3 supported palladium nanoparticles and investigation of their roles as magnetically recyclable catalysts for nitrobenzene hydrogenation T Jiang Applied Catalysis A: General 502, 105-113, 2015 | 26 | 2015 |
Novel Ni-Ba1+xZr0.3Ce0.5Y0.2O3−δ hydrogen electrodes as effective reduction barriers for reversible solid oxide cells based on doped ceria electrolyte thin film Y Rao Journal of Power Sources 199, 142-145, 2012 | 26 | 2012 |
Structure-property relationship of graphene coupled metal (Ni, Co, Fe)(oxy) hydroxides for efficient electrochemical evolution of oxygen J He, T Wu, SY Chen, R Miao, Y Dang, W Zhong, M Wang, T Jiang, ... Journal of Catalysis 377, 619-628, 2019 | 24 | 2019 |
Effect of Gd substitution on the structural, magnetic, and magnetocaloric properties of HoCrO3 S Yin, W Zhong, CJ Guild, J Shi, SL Suib, LF Cótica, M Jain Journal of Applied Physics 123 (5), 2018 | 23 | 2018 |
Modified inverse micelle synthesis for mesoporous alumina with a high D4 siloxane adsorption capacity W Zhong Microporous and Mesoporous Materials 239, 328-335, 2017 | 23 | 2017 |