Exploring the Interaction between Lithium Ion and Defective Graphene Surface Using Dispersion Corrected DFT Studies

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© 2013 ECS - The Electrochemical Society
, , Citation Vijayakumar Murugesan and Jianzhi Hu 2013 ECS Trans. 53 23 DOI 10.1149/05310.0023ecst

1938-5862/53/10/23

Abstract

To analyze the lithium ion interaction with realistic graphene surfaces, we carried out dispersion corrected DFT-D3 studies on graphene with common point defects and chemisorbed oxygen containing functional groups along with defect free graphene surface. Our study reveals that, the interaction between lithium ion (Li+) and graphene is mainly through the delocalized π electron of pure graphene layer. However, the oxygen containing functional groups pose high adsorption energy for lithium ion due to the Li-O ionic bond formation. Similarly, the point defect groups interact with lithium ion through possible carbon dangling bonds and/or cation-π type interactions. Overall these defect sites render a preferential site for lithium ions compared with pure graphene layer. Based on these findings, the role of graphene surface defects in lithium battery performance were discussed.

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10.1149/05310.0023ecst