Standout Papers
- Electrocatalysis for the oxygen evolution reaction: recent development and future perspectives (2017)
- Atomically dispersed Ni(i) as the active site for electrochemical CO2 reduction (2018)
- Identification of catalytic sites for oxygen reduction and oxygen evolution in N-doped graphene materials: Development of highly efficient metal-free bifunctional electrocatalyst (2016)
- In Operando Identification of Geometrical-Site-Dependent Water Oxidation Activity of Spinel Co3O4 (2015)
- Enabling Direct H2O2 Production in Acidic Media through Rational Design of Transition Metal Single Atom Catalyst (2020)
- Layered Structure Causes Bulk NiFe Layered Double Hydroxide Unstable in Alkaline Oxygen Evolution Reaction (2019)
- Breaking Long-Range Order in Iridium Oxide by Alkali Ion for Efficient Water Oxidation (2019)
- Switching the Oxygen Evolution Mechanism on Atomically Dispersed Ru for Enhanced Acidic Reaction Kinetics (2023)
- Unraveling the Origin of Sulfur‐Doped Fe‐N‐C Single‐Atom Catalyst for Enhanced Oxygen Reduction Activity: Effect of Iron Spin‐State Tuning (2021)
- Efficient electrosynthesis of n-propanol from carbon monoxide using a Ag–Ru–Cu catalyst (2022)
- Doping Shortens the Metal/Metal Distance and Promotes OH Coverage in Non-Noble Acidic Oxygen Evolution Reaction Catalysts (2023)
- Valence Oscillation of Ru Active Sites for Efficient and Robust Acidic Water Oxidation (2023)
- Strong‐Proton‐Adsorption Co‐Based Electrocatalysts Achieve Active and Stable Neutral Seawater Splitting (2023)
- Constructing regulable supports via non-stoichiometric engineering to stabilize ruthenium nanoparticles for enhanced pH-universal water splitting (2024)
- Poly(triazine imide) Crystals for Efficient CO2 Photoreduction: Surface Pyridine Nitrogen Dominates the Performance (2025)
- Synergistic Ru Species on Poly(heptazine imide) Enabling Efficient Photocatalytic CO2 Reduction with H2O beyond 800 nm (2025)
Immediate Impact
1 by Nobel laureates 8 from Science/Nature 244 standout
Citing Papers
MOF-Based Electrocatalysts: An Overview from the Perspective of Structural Design
2025 Standout
Interfacial Catalysis at Atomic Level
2025 Standout
Works of Sung‐Fu Hung being referenced
Facet engineering accelerates spillover hydrogenation on highly diluted metal nanocatalysts
2020
Atomically dispersed Ni(i) as the active site for electrochemical CO2 reduction
2018 Standout
Author Peers
| Author | Last Decade | Papers | Cites | |||
|---|---|---|---|---|---|---|
| Sung‐Fu Hung | 17423 | 11300 | 6661 | 125 | 19.6k | |
| Min‐Rui Gao | 17239 | 13227 | 6492 | 160 | 20.9k | |
| Ifan E. L. Stephens | 19815 | 12726 | 7331 | 159 | 22.1k | |
| Anthony Vasileff | 13280 | 8041 | 5517 | 54 | 15.8k | |
| Maoyu Wang | 11288 | 7707 | 4621 | 93 | 13.7k | |
| Mingchuan Luo | 12746 | 7149 | 5135 | 123 | 14.5k | |
| Bo You | 12652 | 9616 | 4201 | 148 | 15.7k | |
| Brian Seger | 11276 | 6017 | 7212 | 104 | 15.2k | |
| Frédéric Jaouen | 23644 | 20439 | 6795 | 160 | 26.7k | |
| Dehui Deng | 14308 | 9428 | 10093 | 127 | 21.0k | |
| Chuan Xia | 9886 | 10664 | 4909 | 132 | 17.8k |
All Works
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