Effect of MgO Templating on the Synthesis and Properties of Dissolved Lignin-Based Hard Carbon for Na-Ion Battery Applications †
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References
- Matei Ghimbeu, C.; Zhang, B.; Martinez de Yuso, A.; Réty, B.; Tarascon, J.-M. Valorizing Low Cost and Renewable Lignin as Hard Carbon for Na-Ion Batteries: Impact of Lignin Grade. Carbon 2019, 153, 634–647. [Google Scholar] [CrossRef]
- Kamiyama, A.; Kubota, K.; Igarashi, D.; Youn, Y.; Tateyama, Y.; Ando, H.; Gotoh, K.; Komaba, S. MgO-Template Synthesis of Extremely High Capacity Hard Carbon for Na-Ion Battery. Angew. Chem. Int. Ed. 2021, 60, 5114–5120. [Google Scholar] [CrossRef]
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Robiños, A.; Zhang, H.; Mousavi, Z.; Smått, J.-H.; Laurén, T.; Hupa, L.; Xu, C.; Bobacka, J. Effect of MgO Templating on the Synthesis and Properties of Dissolved Lignin-Based Hard Carbon for Na-Ion Battery Applications. Proceedings 2023, 92, 16. https://doi.org/10.3390/proceedings2023092016
Robiños A, Zhang H, Mousavi Z, Smått J-H, Laurén T, Hupa L, Xu C, Bobacka J. Effect of MgO Templating on the Synthesis and Properties of Dissolved Lignin-Based Hard Carbon for Na-Ion Battery Applications. Proceedings. 2023; 92(1):16. https://doi.org/10.3390/proceedings2023092016
Chicago/Turabian StyleRobiños, Angelo, Hao Zhang, Zekra Mousavi, Jan-Henrik Smått, Tor Laurén, Leena Hupa, Chunlin Xu, and Johan Bobacka. 2023. "Effect of MgO Templating on the Synthesis and Properties of Dissolved Lignin-Based Hard Carbon for Na-Ion Battery Applications" Proceedings 92, no. 1: 16. https://doi.org/10.3390/proceedings2023092016
APA StyleRobiños, A., Zhang, H., Mousavi, Z., Smått, J. -H., Laurén, T., Hupa, L., Xu, C., & Bobacka, J. (2023). Effect of MgO Templating on the Synthesis and Properties of Dissolved Lignin-Based Hard Carbon for Na-Ion Battery Applications. Proceedings, 92(1), 16. https://doi.org/10.3390/proceedings2023092016