Back to Search Start Over

Mutually Activated 2D Ti0.87O2/MXene Monolayers Through Electronic Compensation Effect as Highly Efficient Cathode Catalysts of Li–O2 Batteries.

Authors :
Zhang, Dongmei
Zhang, Guoliang
Liu, Runbo
Yang, Ruonan
Li, Xia
Zhang, Xiuqi
Yu, Han
Zhang, Pengxiang
Li, Bao‐Wen
Hou, Hua
Guo, Zhanhu
Dang, Feng
Source :
Advanced Functional Materials. Oct2024, p1. 11p. 8 Illustrations.
Publication Year :
2024

Abstract

2D materials exhibit remarkable electrochemical performance as the cathode catalyst in lithium–oxygen batteries (LOBs). Their catalytic capability mainly derives from their 2D surface with tunable surface chemistry and unique electronic states. Herein, Ti0.87O2 and Ti3C2 MXene monolayers are applied to construct a face/face 2D heterostructure to enhance the catalytic performance in LOBs. It is demonstrated that electronic compensation from the O‐terminated MXene to Ti0.87O2 side is achieved through the built‐in electric field and the overlap of Ti 3<italic>d</italic> and O 2<italic>p</italic> orbitals between Ti0.87O2 and MXene units. As a result, the ORR/OER catalytic activity is improved in Ti0.87O2/MXene heterojunction due to the modulated <italic>p</italic>‐band center that optimizes the <italic>s–p</italic> coupling with the key intermediate LiO2. The Ti0.87O2/MXene cathode presents a structural stability and long‐term cycling life of 425 cycles (2534 h) at 200 mA g−1 and 407 cycles at 1000 mA g−1 with a fixed capacity of 600 mAh g−1, being nearly five and three times higher than that of pure Ti0.87O2 and MXene cathodes, respectively. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1616301X
Database :
Academic Search Index
Journal :
Advanced Functional Materials
Publication Type :
Academic Journal
Accession number :
180265333
Full Text :
https://doi.org/10.1002/adfm.202414679