Rational Design of Ultrafine Co, Fe, Ni, and Cu on Fluorine-Free Nitrogen-Doped MXene via a Molten Salt Etching Strategy for the Adsorption-Barrier-Catalyst Functions of Polysulfides toward High-Energy Lithium-Sulfur Batteries.

Wang Z, Dong F, Tan L, Xiong S, Feng J

Open source

DOI
10.1021/acs.nanolett.5c04418
Published
2025 Dec 17
Container
Nano letters
Publisher
Not recorded
Open access
unknown

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BibTeX

@article{allodium:10.1021/acs.nanolett.5c04418,
  title = {Rational Design of Ultrafine Co, Fe, Ni, and Cu on Fluorine-Free Nitrogen-Doped MXene via a Molten Salt Etching Strategy for the Adsorption-Barrier-Catalyst Functions of Polysulfides toward High-Energy Lithium-Sulfur Batteries.},
  author = {Wang Z and Dong F and Tan L and Xiong S and Feng J},
  year = {2025},
  journal = {Nano letters},
  doi = {10.1021/acs.nanolett.5c04418},
  url = {https://doi.org/10.1021/acs.nanolett.5c04418}
}

RIS

TY  - JOUR
TI  - Rational Design of Ultrafine Co, Fe, Ni, and Cu on Fluorine-Free Nitrogen-Doped MXene via a Molten Salt Etching Strategy for the Adsorption-Barrier-Catalyst Functions of Polysulfides toward High-Energy Lithium-Sulfur Batteries.
AU  - Wang Z
AU  - Dong F
AU  - Tan L
AU  - Xiong S
AU  - Feng J
PY  - 2025
JO  - Nano letters
DO  - 10.1021/acs.nanolett.5c04418
UR  - https://doi.org/10.1021/acs.nanolett.5c04418
ER  - 

APA

Z, W., F, D., L, T., S, X., & J, F. (2025). Rational Design of Ultrafine Co, Fe, Ni, and Cu on Fluorine-Free Nitrogen-Doped MXene via a Molten Salt Etching Strategy for the Adsorption-Barrier-Catalyst Functions of Polysulfides toward High-Energy Lithium-Sulfur Batteries.. Nano letters. https://doi.org/10.1021/acs.nanolett.5c04418

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