Evoking surface‐driven capacitive process through sulfur implantation into nitrogen‐coordinated hard carbon hollow spheres achieves superior alkali metal ion storage beyond lithium

Gongrui Wang, Jingyu Gao, Wentao Wang, Zongzhi Tao, Xiaoyue He, Liang Shi, Genqiang Zhang

Open source

DOI
10.1002/bte2.20230031
Published
11
Container
Battery Energy
Publisher
Not recorded
Open access
yes

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BibTeX

@article{allodium:10.1002/bte2.20230031,
  title = {Evoking surface‐driven capacitive process through sulfur implantation into nitrogen‐coordinated hard carbon hollow spheres achieves superior alkali metal ion storage beyond lithium},
  author = {Gongrui Wang and Jingyu Gao and Wentao Wang and Zongzhi Tao and Xiaoyue He and Liang Shi and Genqiang Zhang},
  year = {2023},
  journal = {Battery Energy},
  doi = {10.1002/bte2.20230031},
  url = {https://doi.org/10.1002/bte2.20230031}
}

RIS

TY  - JOUR
TI  - Evoking surface‐driven capacitive process through sulfur implantation into nitrogen‐coordinated hard carbon hollow spheres achieves superior alkali metal ion storage beyond lithium
AU  - Gongrui Wang
AU  - Jingyu Gao
AU  - Wentao Wang
AU  - Zongzhi Tao
AU  - Xiaoyue He
AU  - Liang Shi
AU  - Genqiang Zhang
PY  - 2023
JO  - Battery Energy
DO  - 10.1002/bte2.20230031
UR  - https://doi.org/10.1002/bte2.20230031
ER  - 

APA

Wang, G., Gao, J., Wang, W., Tao, Z., He, X., Shi, L., & Zhang, G. (2023). Evoking surface‐driven capacitive process through sulfur implantation into nitrogen‐coordinated hard carbon hollow spheres achieves superior alkali metal ion storage beyond lithium. Battery Energy. https://doi.org/10.1002/bte2.20230031

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