Interface Engineering in MOF‐Derived NiOOH/FeOOH Heterostructures: Boosting OER Performance via Lattice Oxygen Redox Regulation and AEM/LOM Synergy

Siyi Li, Meng Tian, Dawei Qi, Tianxia Chen, Zhiping Liu, Shouhao Yang, Yunqi Song, Xinyu Tian, Xiangyu Liu

Open source

DOI
10.1002/smll.74310
Published
2026-06-19
Container
Small
Publisher
Wiley
Open access
unknown

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BibTeX

@article{allodium:10.1002/smll.74310,
  title = {Interface Engineering in MOF‐Derived NiOOH/FeOOH Heterostructures: Boosting OER Performance via Lattice Oxygen Redox Regulation and AEM/LOM Synergy},
  author = {Siyi Li and Meng Tian and Dawei Qi and Tianxia Chen and Zhiping Liu and Shouhao Yang and Yunqi Song and Xinyu Tian and Xiangyu Liu},
  year = {2026},
  journal = {Small},
  doi = {10.1002/smll.74310},
  url = {https://doi.org/10.1002/smll.74310}
}

RIS

TY  - JOUR
TI  - Interface Engineering in MOF‐Derived NiOOH/FeOOH Heterostructures: Boosting OER Performance via Lattice Oxygen Redox Regulation and AEM/LOM Synergy
AU  - Siyi Li
AU  - Meng Tian
AU  - Dawei Qi
AU  - Tianxia Chen
AU  - Zhiping Liu
AU  - Shouhao Yang
AU  - Yunqi Song
AU  - Xinyu Tian
AU  - Xiangyu Liu
PY  - 2026
JO  - Small
DO  - 10.1002/smll.74310
UR  - https://doi.org/10.1002/smll.74310
ER  - 

APA

Li, S., Tian, M., Qi, D., Chen, T., Liu, Z., Yang, S., Song, Y., Tian, X., & Liu, X. (2026). Interface Engineering in MOF‐Derived NiOOH/FeOOH Heterostructures: Boosting OER Performance via Lattice Oxygen Redox Regulation and AEM/LOM Synergy. Small. https://doi.org/10.1002/smll.74310

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