Photochemical route for synthesizing atomically dispersed palladium catalysts P Liu, Y Zhao, R Qin, S Mo, G Chen, L Gu, DM Chevrier, P Zhang, Q Guo, ... Science 352 (6287), 797-800, 2016 | 1799 | 2016 |
Surface coordination chemistry of metal nanomaterials P Liu, R Qin, G Fu, N Zheng Journal of the American Chemical Society 139 (6), 2122-2131, 2017 | 596 | 2017 |
A cationic surfactant assisted selective etching strategy to hollow mesoporous silica spheres X Fang, C Chen, Z Liu, P Liu, N Zheng Nanoscale 3 (4), 1632-1639, 2011 | 358 | 2011 |
Strategies for stabilizing atomically dispersed metal catalysts R Qin, P Liu, G Fu, N Zheng Small Methods 2 (1), 1700286, 2018 | 356 | 2018 |
Hollow mesoporous aluminosilica spheres with perpendicular pore channels as catalytic nanoreactors X Fang, Z Liu, MF Hsieh, M Chen, P Liu, C Chen, N Zheng ACS nano 6 (5), 4434-4444, 2012 | 293 | 2012 |
Facet engineering accelerates spillover hydrogenation on highly diluted metal nanocatalysts L Jiang, K Liu, SF Hung, L Zhou, R Qin, Q Zhang, P Liu, L Gu, HM Chen, ... Nature nanotechnology 15 (10), 848-853, 2020 | 268 | 2020 |
Ultrastable atomic copper nanosheets for selective electrochemical reduction of carbon dioxide L Dai, Q Qin, P Wang, X Zhao, C Hu, P Liu, R Qin, M Chen, D Ou, C Xu, ... Science advances 3 (9), e1701069, 2017 | 256 | 2017 |
Interfacing with silica boosts the catalysis of copper C Xu, G Chen, Y Zhao, P Liu, X Duan, L Gu, G Fu, Y Yuan, N Zheng Nature Communications 9 (1), 3367, 2018 | 215 | 2018 |
Pd nanosheet‐covered hollow mesoporous silica nanoparticles as a platform for the chemo‐photothermal treatment of cancer cells W Fang, S Tang, P Liu, X Fang, J Gong, N Zheng Small 8 (24), 3816-3822, 2012 | 214 | 2012 |
Alkali ions secure hydrides for catalytic hydrogenation R Qin, L Zhou, P Liu, Y Gong, K Liu, C Xu, Y Zhao, L Gu, G Fu, N Zheng Nature Catalysis 3 (9), 703-709, 2020 | 161 | 2020 |
Shape‐Controlled Synthesis of Surface‐Clean Ultrathin Palladium Nanosheets by Simply Mixing a Dinuclear PdI Carbonyl Chloride Complex with H2O H Li, G Chen, H Yang, X Wang, J Liang, P Liu, M Chen, N Zheng Angewandte Chemie 125 (32), 8526-8530, 2013 | 122 | 2013 |
A vicinal effect for promoting catalysis of Pd1/TiO2: supports of atomically dispersed catalysts play more roles than simply serving as ligands P Liu, Y Zhao, R Qin, L Gu, P Zhang, G Fu, N Zheng Science bulletin 63 (11), 675-682, 2018 | 91 | 2018 |
Coordination chemistry of atomically dispersed catalysts P Liu, N Zheng National Science Review 5 (5), 636-638, 2018 | 70 | 2018 |
Tuning the electronic structure of AuNi homogeneous solid-solution alloy with positively charged Ni center for highly selective electrochemical CO2 reduction J Hao, H Zhu, Y Li, P Liu, S Lu, F Duan, W Dong, Y Lu, T Liu, M Du Chemical Engineering Journal 404, 126523, 2021 | 60 | 2021 |
Cu2O-Supported Atomically Dispersed Pd Catalysts for Semihydrogenation of Terminal Alkynes: Critical Role of Oxide Supports K Liu, R Qin, L Zhou, P Liu, Q Zhang, W Jing, P Ruan, L Gu, G Fu, ... CCS Chemistry, 207-214, 2019 | 58 | 2019 |
Insights into Magnetic Interactions in a Monodisperse Gd12Fe14 Metal Cluster XY Zheng, H Zhang, Z Wang, P Liu, MH Du, YZ Han, RJ Wei, ZW Ouyang, ... Angewandte Chemie International Edition 56 (38), 11475-11479, 2017 | 53 | 2017 |
Single‐Site Ruthenium Pincer Complex Knitted into Porous Organic Polymers for Dehydrogenation of Formic Acid X Wang, EAP Ling, C Guan, Q Zhang, W Wu, P Liu, N Zheng, D Zhang, ... ChemSusChem 11 (20), 3591-3598, 2018 | 51 | 2018 |
Ultrathin single crystalline MgO (111) nanosheets P Liu, PM Abdala, G Goubert, MG Willinger, C Copéret Angewandte Chemie International Edition 60 (6), 3254-3260, 2021 | 48 | 2021 |
Atomically dispersed iridium on MgO (111) nanosheets catalyses benzene–ethylene coupling towards styrene P Liu, X Huang, D Mance, C Copéret Nature Catalysis 4 (11), 968-975, 2021 | 44 | 2021 |
Atomic overlayer of permeable microporous cuprous oxide on palladium promotes hydrogenation catalysis K Liu, L Jiang, W Huang, G Zhu, YJ Zhang, C Xu, R Qin, P Liu, C Hu, ... Nature Communications 13 (1), 2597, 2022 | 41 | 2022 |