Tailoring Surface Chemistry of Mxenes to Boost Initial Coulombic Efficiency for Lithium Storage

23 Pages Posted: 1 Nov 2022

See all articles by Yunfeng Guan

Yunfeng Guan

Wuhan University of Science and Technology

Rong Zhao

Wuhan University of Science and Technology

Ke Li

Trinity College (Dublin)

Kai Chen

Wuhan University of Science and Technology

Hui Zhu

Wuhan University of Science and Technology

Xuanke Li

Wuhan University of Science and Technology

Qin Zhang

Wuhan University of Science and Technology

Nianjun Yang

University of Siegen

Zhijun Dong

Wuhan University of Science and Technology

Guanming Yuan

Wuhan University of Science and Technology

Yanjun Li

Wuhan University of Science and Technology

Ye Cong

Wuhan University of Science and Technology

Abstract

MXenes are expected to exhibit excellent lithium-ion storage performance due to its good electronic conductivity, tunable functional groups, and unique accordion-like structure. However, they suffer from low initial coulombic efficiency (ICE) caused by the trapping and the irreversible reaction between MXene nanosheets and lithium ions. In this work, we propose a facile d-band center regulation strategy via doping engineering to achieve tailorable surface chemistry of MXene, revealing the intrinsic effects of heteroatoms doping on surface chemistry and ICE. This strategy can be applied to various MXenes, which is verified in the case of V2-yCryC as well as TiNbC, and TiVC MXenes. Typically, the V1.8Cr0.2C MXene delivers a double lithium storage capacity in comparison to V2C MXene. Its ICE is improved from 60% to 86%, surpassing most state-of-the-art MXenes. Theoretical calculations reveal that the shift of the d-band center towards the Fermi level is induced by the introduction of Cr and responsible for the improved electrochemical performance. It increases its chemical affinity and absorbability for oxygen-containing functional groups and lithium ions, providing a favorable surface chemistry for efficient lithium storage. This work provides a new strategy to tailor the fine structures of MXenes for their further energy storage applications.

Keywords: MXene, Initial coulombic efficiency, Surface chemistry, Heteroatoms doping, Lithium storage

Suggested Citation

Guan, Yunfeng and Zhao, Rong and Li, Ke and Chen, Kai and Zhu, Hui and Li, Xuanke and Zhang, Qin and Yang, Nianjun and Dong, Zhijun and Yuan, Guanming and Li, Yanjun and Cong, Ye, Tailoring Surface Chemistry of Mxenes to Boost Initial Coulombic Efficiency for Lithium Storage. Available at SSRN: https://ssrn.com/abstract=4263513 or http://dx.doi.org/10.2139/ssrn.4263513

Yunfeng Guan

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Rong Zhao

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Ke Li

Trinity College (Dublin) ( email )

Kai Chen

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Hui Zhu

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Xuanke Li

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Qin Zhang

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Nianjun Yang

University of Siegen

Hoelderlinstrasse 3
57068 Siegen, 57068
Germany

Zhijun Dong

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Guanming Yuan

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Yanjun Li

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

Ye Cong (Contact Author)

Wuhan University of Science and Technology ( email )

947 Heping Avenue,Qingshan District
null
Wuhan, 430081
China

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