Standout Papers
- Improving CO2-to-C2+ Product Electroreduction Efficiency via Atomic Lanthanide Dopant-Induced Tensile-Strained CuOx Catalysts (2023)
- p–d Orbital Hybridization Induced by p-Block Metal-Doped Cu Promotes the Formation of C2+ Products in Ampere-Level CO2 Electroreduction (2023)
- Atomically Dispersed Ni–Cu Catalysts for pH‐Universal CO2 Electroreduction (2023)
- Oxophilicity-Controlled CO2 Electroreduction to C2+ Alcohols over Lewis Acid Metal-Doped Cuδ+ Catalysts (2023)
- Boosting Electrocatalytic Nitrate‐to‐Ammonia via Tuning of N‐Intermediate Adsorption on a Zn−Cu Catalyst (2023)
- CO2 electrolysis to multi-carbon products in strong acid at ampere-current levels on La-Cu spheres with channels (2024)
Immediate Impact
3 by Nobel laureates 4 from Science/Nature 119 standout
Citing Papers
Breaking symmetry for better catalysis: insights into single-atom catalyst design
2025 Standout
MOF-Based Electrocatalysts: An Overview from the Perspective of Structural Design
2025 Standout
Works of Xiaofu Sun being referenced
Metal–organic framework-derived indium–copper bimetallic oxide catalysts for selective aqueous electroreduction of CO2
2019
Efficient Reduction of CO2 into Formic Acid on a Lead or Tin Electrode using an Ionic Liquid Catholyte Mixture
2016
Author Peers
| Author | Last Decade | Papers | Cites | ||||
|---|---|---|---|---|---|---|---|
| Xiaofu Sun | 4715 | 6302 | 1327 | 2448 | 158 | 8.1k | |
| Qinggong Zhu | 4014 | 5998 | 1749 | 2141 | 120 | 7.2k | |
| Xiaowa Nie | 4101 | 4460 | 1672 | 3864 | 93 | 7.2k | |
| Youngkook Kwon | 3174 | 6756 | 777 | 2489 | 90 | 7.7k | |
| Minghui Zhu | 4582 | 4350 | 1205 | 5319 | 229 | 9.3k | |
| Xinchen Kang | 2547 | 3479 | 835 | 1789 | 113 | 4.8k | |
| Jun Ma | 3020 | 3923 | 2584 | 1977 | 100 | 6.7k | |
| Wenlei Zhu | 2627 | 6285 | 593 | 3891 | 122 | 9.2k | |
| Fanfei Sun | 2372 | 7067 | 454 | 3414 | 107 | 9.0k | |
| Zhigang Geng | 2707 | 4623 | 335 | 2883 | 80 | 6.5k | |
| Jian Yang | 2032 | 6676 | 414 | 3376 | 92 | 8.7k |
All Works
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