Standout Papers
- Fe–N–C electrocatalyst with dense active sites and efficient mass transport for high-performance proton exchange membrane fuel cells (2019)
- Carbon‐Based Metal‐Free ORR Electrocatalysts for Fuel Cells: Past, Present, and Future (2019)
- Multifunctional Organic–Inorganic Hybrid Aerogel for Self‐Cleaning, Heat‐Insulating, and Highly Efficient Microwave Absorbing Material (2018)
- Sulfur-anchoring synthesis of platinum intermetallic nanoparticle catalysts for fuel cells (2021)
- Unveiling the high-activity origin of single-atom iron catalysts for oxygen reduction reaction (2018)
- N-doped carbon nanomaterials are durable catalysts for oxygen reduction reaction in acidic fuel cells (2015)
- Porous CNTs/Co Composite Derived from Zeolitic Imidazolate Framework: A Lightweight, Ultrathin, and Highly Efficient Electromagnetic Wave Absorber (2016)
- Nanocasting SiO2 into metal–organic frameworks imparts dual protection to high-loading Fe single-atom electrocatalysts (2020)
- Iron atom–cluster interactions increase activity and improve durability in Fe–N–C fuel cells (2022)
- Phosphated IrMo bimetallic cluster for efficient hydrogen evolution reaction (2022)
- Construction of Co4 Atomic Clusters to Enable Fe−N4 Motifs with Highly Active and Durable Oxygen Reduction Performance (2023)
- Environmentally Tough and Stretchable MXene Organohydrogel with Exceptionally Enhanced Electromagnetic Interference Shielding Performances (2022)
- Off/on switchable smart electromagnetic interference shielding aerogel (2021)
Immediate Impact
3 by Nobel laureates 12 from Science/Nature 188 standout
Citing Papers
MOF-Based Electrocatalysts: An Overview from the Perspective of Structural Design
2025 Standout
Ultrastrong MXene film induced by sequential bridging with liquid metal
2024 StandoutScience
Works of Jianglan Shui being referenced
MXene-Reinforced Liquid Metal/Polymer Fibers via Interface Engineering for Wearable Multifunctional Textiles
2022
Alginate-templated synthesis of CoFe/carbon fiber composite and the effect of hierarchically porous structure on electromagnetic wave absorption performance
2019
Author Peers
| Author | Last Decade | Papers | Cites | |||
|---|---|---|---|---|---|---|
| Jianglan Shui | 9113 | 9046 | 4709 | 162 | 15.5k | |
| Renbing Wu | 8299 | 5602 | 3883 | 143 | 13.7k | |
| Peng Xiao | 5730 | 4934 | 4416 | 275 | 11.1k | |
| Zhonghua Zhang | 6831 | 6534 | 6271 | 322 | 12.7k | |
| Chuangang Hu | 8800 | 7158 | 5876 | 148 | 15.8k | |
| Ronghai Yu | 3008 | 2991 | 4096 | 180 | 12.0k | |
| Chunling Zhu | 5212 | 3255 | 3979 | 177 | 13.8k | |
| Peng Gao | 3701 | 2781 | 3697 | 145 | 8.3k | |
| Yida Deng | 14730 | 11227 | 4813 | 307 | 20.5k | |
| Yifei Yuan | 13636 | 3568 | 3913 | 212 | 17.6k | |
| Feili Lai | 6098 | 4228 | 3178 | 173 | 10.1k |
All Works
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