Rational design of a tunnel-monoclinic intergrowth cathode based on surface energy chemistry modulation for sodium-ion batteries
- DOI
- 10.1039/d6sc04912e
- Published
- 2026
- Container
- Chemical Science
- Publisher
- Royal Society of Chemistry (RSC)
- Open access
- unknown
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Cite this work
BibTeX
@article{allodium:10.1039/d6sc04912e,
title = {Rational design of a tunnel-monoclinic intergrowth cathode based on surface energy chemistry modulation for sodium-ion batteries},
author = {Han-Xiao Liu and Di-Xing Ni and Ling-Yi Kong and Jia-Yang Li and Zepeng Lv and Jianxun Song and Zhen-Guo Wu and Xiao-Dong Guo and Yao Xiao},
year = {2026},
journal = {Chemical Science},
doi = {10.1039/d6sc04912e},
url = {https://doi.org/10.1039/d6sc04912e}
}RIS
TY - JOUR TI - Rational design of a tunnel-monoclinic intergrowth cathode based on surface energy chemistry modulation for sodium-ion batteries AU - Han-Xiao Liu AU - Di-Xing Ni AU - Ling-Yi Kong AU - Jia-Yang Li AU - Zepeng Lv AU - Jianxun Song AU - Zhen-Guo Wu AU - Xiao-Dong Guo AU - Yao Xiao PY - 2026 JO - Chemical Science DO - 10.1039/d6sc04912e UR - https://doi.org/10.1039/d6sc04912e ER -
APA
Liu, H., Ni, D., Kong, L., Li, J., Lv, Z., Song, J., Wu, Z., Guo, X., & Xiao, Y. (2026). Rational design of a tunnel-monoclinic intergrowth cathode based on surface energy chemistry modulation for sodium-ion batteries. Chemical Science. https://doi.org/10.1039/d6sc04912e
Source records
- crossref · retrieved 2026-09-24T22:45:23.605Z