Petal-Graphyne: A Novel 2D Carbon Allotrope for High-Performance Li and Na Ion Storage

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Lima, Kleuton A. L., Laranjeira, José A. S., Martins, Nicolas F., Dias, Alexandre C., Sambrano, J ulio R., Galvão, Douglas S., Junior, Luiz A. Ribeiro
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866916664623235072
author Lima, Kleuton A. L.
Laranjeira, José A. S.
Martins, Nicolas F.
Dias, Alexandre C.
Sambrano, J ulio R.
Galvão, Douglas S.
Junior, Luiz A. Ribeiro
author_facet Lima, Kleuton A. L.
Laranjeira, José A. S.
Martins, Nicolas F.
Dias, Alexandre C.
Sambrano, J ulio R.
Galvão, Douglas S.
Junior, Luiz A. Ribeiro
contents Using density functional theory simulations, this study introduces Petal-Graphyne (PLG), a novel multi-ring metallic structure composed of 4-, 8-, 10-, and 16-membered rings. Its structural, electronic, and lithium/sodium storage properties were comprehensively investigated. PLG exhibits a high theoretical capacity of 1004 mAh/g for Li, Na, and mixed Li/Na ions, surpassing conventional graphite anodes. The material remains metallic, with multiple band crossings at the Fermi level. The optimal energy barriers for Li (0.28 eV) and Na (0.25 eV) on PLG and favorable diffusion coefficients in both monolayer and multilayer configurations are unveiled. The open circuit voltages are 0.47 V for Li, 0.51 V for Na, and 0.54 V for mixed-ion storage, suggesting stable electrochemical performance. These results highlight PLG as a promising candidate for next-generation lithium and sodium-ion batteries, combining high storage capacity and efficient ion transport.
format Preprint
id arxiv_https___arxiv_org_abs_2503_21962
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Petal-Graphyne: A Novel 2D Carbon Allotrope for High-Performance Li and Na Ion Storage
Lima, Kleuton A. L.
Laranjeira, José A. S.
Martins, Nicolas F.
Dias, Alexandre C.
Sambrano, J ulio R.
Galvão, Douglas S.
Junior, Luiz A. Ribeiro
Materials Science
Mesoscale and Nanoscale Physics
00-XX
J.2; I.6
Using density functional theory simulations, this study introduces Petal-Graphyne (PLG), a novel multi-ring metallic structure composed of 4-, 8-, 10-, and 16-membered rings. Its structural, electronic, and lithium/sodium storage properties were comprehensively investigated. PLG exhibits a high theoretical capacity of 1004 mAh/g for Li, Na, and mixed Li/Na ions, surpassing conventional graphite anodes. The material remains metallic, with multiple band crossings at the Fermi level. The optimal energy barriers for Li (0.28 eV) and Na (0.25 eV) on PLG and favorable diffusion coefficients in both monolayer and multilayer configurations are unveiled. The open circuit voltages are 0.47 V for Li, 0.51 V for Na, and 0.54 V for mixed-ion storage, suggesting stable electrochemical performance. These results highlight PLG as a promising candidate for next-generation lithium and sodium-ion batteries, combining high storage capacity and efficient ion transport.
title Petal-Graphyne: A Novel 2D Carbon Allotrope for High-Performance Li and Na Ion Storage
topic Materials Science
Mesoscale and Nanoscale Physics
00-XX
J.2; I.6
url https://arxiv.org/abs/2503.21962