Title:
Biotene: Earth-Abundant 2D Material as Sustainable Anode for Li/Na-Ion Battery

dc.contributor.authorAtin Pramanik
dc.contributor.authorPreeti Lata Mahapatra
dc.contributor.authorRaphael Tromer
dc.contributor.authorJianan Xu
dc.contributor.authorGelu Costin
dc.contributor.authorChenxi Li
dc.contributor.authorSreehari Saju
dc.contributor.authorSalma Alhashim
dc.contributor.authorKavita Pandey
dc.contributor.authorAnchal Srivastava
dc.contributor.authorRobert Vajtai
dc.contributor.authorDouglas S. Galvao
dc.contributor.authorChandra Sekhar Tiwary
dc.contributor.authorPulickel M. Ajayan
dc.date.accessioned2026-02-09T04:34:20Z
dc.date.issued2024
dc.description.abstractNatural ores are abundant, cost-effective, and environmentally friendly. Ultrathin (2D) layers of a naturally abundant van der Waals mineral, Biotite, have been prepared in bulk via exfoliation. We report here that this 2D Biotene material has shown extraordinary Li-Na-ion battery anode properties with ultralong cycling stability. Biotene shows 302 and 141 mAh g-1 first cycle-specific charge capacity for Li- and Na-ion battery applications with ∼90% initial Coulombic efficiency. The electrode exhibits significantly extended cycling stability with ∼75% capacity retention after 4000 cycles even at higher current densities (500-2000 mA g-1). Further, density functional theory studies show the possible Li intercalation mechanism between the 2D Biotene layers. Our work brings new directions toward designing the next generation of metal-ion battery anodes. © 2024 American Chemical Society.
dc.identifier.doi10.1021/acsami.3c15664
dc.identifier.issn19448244
dc.identifier.urihttps://doi.org/10.1021/acsami.3c15664
dc.identifier.urihttps://dl.bhu.ac.in/bhuir/handle/123456789/48575
dc.publisherAmerican Chemical Society
dc.subjectanode materials
dc.subjectbattery electrodes
dc.subjectLi-ion battery
dc.subjectNa-ion battery
dc.subjectnatural ore materials
dc.subjecttwo-dimensional materials
dc.titleBiotene: Earth-Abundant 2D Material as Sustainable Anode for Li/Na-Ion Battery
dc.typePublication
dspace.entity.typeArticle

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