Synergistic A-Site Compensation and Oxygen Vacancy Engineering Boost High-Entropy Electrolyte Performance in Protonic Ceramic Fuel Cells
- Journal:
- Nano Letters
- Published:
- Affiliations:
- 4
- Authors:
- 11
| Institutions | Authors | Share |
|---|---|---|
| China University of Mining and Technology (CUMT), China | 0.77 | |
| Henan University (HENU), China | 0.09 | |
| University of Science and Technology Beijing (USTB), China | 0.09 | |
| Huairon Laboratory, China | 0.05 |