RETRACTED ARTICLE: A universal principle for a rational design of single-atom electrocatalysts H Xu, D Cheng, D Cao, XC Zeng Nature Catalysis 1 (5), 339-348, 2018 | 1445 | 2018 |
Unveiling the high-activity origin of single-atom iron catalysts for oxygen reduction reaction L Yang, D Cheng, H Xu, X Zeng, X Wan, J Shui, Z Xiang, D Cao Proceedings of the National Academy of Sciences 115 (26), 6626-6631, 2018 | 531 | 2018 |
A facile and versatile method for preparation of colored TiO 2 with enhanced solar-driven photocatalytic activity H Tan, Z Zhao, M Niu, C Mao, D Cao, D Cheng, P Feng, Z Sun Nanoscale 6 (17), 10216-10223, 2014 | 453 | 2014 |
Vertical CoP nanoarray wrapped by N, P‐doped carbon for hydrogen evolution reaction in both acidic and alkaline conditions X Huang, X Xu, C Li, D Wu, D Cheng, D Cao Advanced energy materials 9 (22), 1803970, 2019 | 343 | 2019 |
Single‐Atom Ru Doping Induced Phase Transition of MoS2 and S Vacancy for Hydrogen Evolution Reaction J Zhang, X Xu, L Yang, D Cheng, D Cao Small Methods 3 (12), 1900653, 2019 | 269 | 2019 |
CoP nanowires coupled with CoMoP nanosheets as a highly efficient cooperative catalyst for hydrogen evolution reaction X Huang, X Xu, X Luan, D Cheng Nano Energy 68, 104332, 2020 | 243 | 2020 |
Controllable etching of MoS2 basal planes for enhanced hydrogen evolution through the formation of active edge sites Z Wang, Q Li, H Xu, C Dahl-Petersen, Q Yang, D Cheng, D Cao, ... Nano Energy 49, 634-643, 2018 | 243 | 2018 |
Cu, N-codoped hierarchical porous carbons as electrocatalysts for oxygen reduction reaction H Yu, A Fisher, D Cheng, D Cao ACS Applied Materials & Interfaces 8 (33), 21431-21439, 2016 | 224 | 2016 |
Computational approaches to the chemical conversion of carbon dioxide D Cheng, FR Negreiros, E Aprà, A Fortunelli ChemSusChem 6 (6), 944-965, 2013 | 179 | 2013 |
Facile synthesis of Cu/NiCu electrocatalysts integrating alloy, core–shell, and one-dimensional structures for efficient methanol oxidation reaction D Wu, W Zhang, D Cheng ACS Applied Materials & Interfaces 9 (23), 19843-19851, 2017 | 136 | 2017 |
Silicon nanotube as a promising candidate for hydrogen storage: from the first principle calculations to grand canonical Monte Carlo simulations J Lan, D Cheng, D Cao, W Wang The Journal of Physical Chemistry C 112 (14), 5598-5604, 2008 | 127 | 2008 |
Construction of Defect‐Rich RhCu Nanotubes with Highly Active Rh3Cu1 Alloy Phase for Overall Water Splitting in All pH Values D Cao, H Xu, D Cheng Advanced Energy Materials 10 (9), 1903038, 2020 | 125 | 2020 |
Active site identification and evaluation criteria of in situ grown CoTe and NiTe nanoarrays for hydrogen evolution and oxygen evolution reactions L Yang, H Xu, H Liu, D Cheng, D Cao Small Methods 3 (5), 1900113, 2019 | 113 | 2019 |
Development of a thiophene derivative modified LDH coating for Mg alloy corrosion protection LX Li, ZH Xie, C Fernandez, L Wu, D Cheng, XH Jiang, CJ Zhong Electrochimica Acta 330, 135186, 2020 | 109 | 2020 |
Thermal behavior of core-shell and three-shell layered clusters: Melting of and D Cheng, S Huang, W Wang Physical Review B—Condensed Matter and Materials Physics 74 (6), 064117, 2006 | 105 | 2006 |
Interface construction of P-Substituted MoS2 as efficient and robust electrocatalyst for alkaline hydrogen evolution reaction X Huang, H Xu, D Cao, D Cheng Nano Energy 78, 105253, 2020 | 95 | 2020 |
The onion-ring structure for Pd− Pt bimetallic clusters D Cheng, W Wang, S Huang The Journal of Physical Chemistry B 110 (33), 16193-16196, 2006 | 95 | 2006 |
Design of the Alkali-Metal-Doped WO3 as a Near-Infrared Shielding Material for Smart Window C Yang, JF Chen, X Zeng, D Cheng, D Cao Industrial & Engineering Chemistry Research 53 (46), 17981-17988, 2014 | 94 | 2014 |
Construction of Dual‐Site Atomically Dispersed Electrocatalysts with Ru‐C5 Single Atoms and Ru‐O4 Nanoclusters for Accelerated Alkali Hydrogen Evolution D Cao, J Wang, H Xu, D Cheng Small 17 (31), 2101163, 2021 | 93 | 2021 |
Growth of highly active amorphous RuCu nanosheets on Cu nanotubes for the hydrogen evolution reaction in wide pH values D Cao, J Wang, H Xu, D Cheng Small 16 (37), 2000924, 2020 | 88 | 2020 |