Morphology Derived Coconut Sheath for Sodium-Ion Battery

PDF Publication Title:

Morphology Derived Coconut Sheath for Sodium-Ion Battery ( morphology-derived-coconut-sheath-sodium-ion-battery )

Previous Page View | Next Page View | Return to Search List

Text from PDF Page: 020

Energies 2022, 15, 8086 20 of 20 33. Subramanian, V.; Luo, C.; Stephan, A.M.; Nahm, K.S.; Thomas, S.; Wei, B. Supercapacitors from activated carbon derived from banana fibers. J. Phys. Chem. C 2007, 111, 7527–7531. [CrossRef] 34. Ulfa, M.; Trisunaryanti, W.; Falah, I.I.; Kartini, I.; Sutarno, I. Synthesis of meso porous carbon using gelatin as source of carbon by hard template technique and its characterizations. IOSR J. Appl. Chem. 2014, 7, 1–7. [CrossRef] 35. Ge, C.; Fan, Z.; Zhang, J.; Qiao, Y.; Wang, J.; Ling, L. Novel hard carbon/graphite composites synthesized by a facile in situ anchoring method as high-performance anodes for lithium-ion batteries. RSC Adv. 2018, 8, 34682–34689. [CrossRef] [PubMed] 36. Zhang, T.; Mao, J.; Liu, X.; Xuan, M.; Bi, K.; Zhang, X.L.; Hu, J.; Fan, J.; Chen, S.; Shao, G. Pinecone biomass-derived hard carbon anodes for high-performance sodium-ion batteries. RSC Adv. 2017, 7, 41504–41511. [CrossRef] 37. Pei, L.; Cao, H.; Yang, L.; Liu, P.; Zhao, M.; Xu, B.; Guo, J. Hard carbon derived from waste tea biomass as high-performance anode material for sodium-ion batteries. Ionics 2020, 26, 5535–5542. [CrossRef] 38. Zhang, H.; Ming, H.; Zhang, W.; Cao, G.; Yang, Y. Coupled carbonization strategy toward advanced hard carbon for high-energy sodium-ion battery. ACS Appl. Mater. Interfaces 2017, 9, 23766–23774. [CrossRef] [PubMed] 39. Wahid, M.; Gawli, Y.; Puthusseri, D.; Kumar, A.; Shelke, M.V.; Ogale, S. Nutty carbon: Morphology replicating hard carbon from walnut shell for Na ion battery anode. ACS Omega 2017, 2, 3601–3609. [CrossRef] [PubMed] 40. Zhu, Y.E.; Gu, H.; Chen, Y.N.; Yang, D.; Wei, J.; Zhou, Z. Hard carbon derived from corn straw piths as anode materials for sodium ion batteries. Ionics 2018, 24, 1075–1081. [CrossRef]

PDF Image | Morphology Derived Coconut Sheath for Sodium-Ion Battery

PDF Search Title:

Morphology Derived Coconut Sheath for Sodium-Ion Battery

Original File Name Searched:

energies-15-08086.pdf

DIY PDF Search: Google It | Yahoo | Bing

Salgenx Redox Flow Battery Technology: Salt water flow battery technology with low cost and great energy density that can be used for power storage and thermal storage. Let us de-risk your production using our license. Our aqueous flow battery is less cost than Tesla Megapack and available faster. Redox flow battery. No membrane needed like with Vanadium, or Bromine. Salgenx flow battery

CONTACT TEL: 608-238-6001 Email: greg@salgenx.com (Standard Web Page)