Carbon Modified Mxene Through Gas Thermal Penetration Treatment for Electrochemical Energy Storage

20 Pages Posted: 16 Jan 2025

See all articles by Zhirong Zhang

Zhirong Zhang

Yancheng Institute of Technology

Zhenyu Liu

Yancheng Institute of Technology

Zewei Lin

South University of Science and Technology of China

Zhiming Xu

Harbin Institute of Technology

Ruitao Wang

Tianjin University

Zhongping Yao

Harbin Institute of Technology

Wei Wang

Yancheng Institute of Technology

Abstract

MXenes are highly promising materials for diverse applications due to their adjustable surface chemistry and metallic conductivity. However, high-temperature processing often exacerbates MXene oxidation even at invert atmosphere, leading to a substantial reduction in electrical conductivity. Despite this, high-temperature treatment can introduce beneficial features such as increased -O active sites and decreased interflake resistance. In this study, we introduce a novel gas-thermal penetration method using formamide to deposit a uniform carbon layer on Ti3C2Tx MXene. This approach enhances electron transport between the carbon layer and Ti3C2Tx, effectively addressing the challenge of slow electron transmission associated with high-temperature treated Ti3C2Tx. DFT calculations reveal evident charge transfer from the deposited carbon layer to the Ti3C2Tx nanosheet, driven by interfacial electronic interactions, which enhances the conductivity and electrochemical properties of the hybrid material. The resultant 500-Ti3C2Tx demonstrates a significant increase in specific capacitance (121 F/g), a 2.9-fold improvement over pristine Ti3C2Tx, due to the enhanced -O terminations, faster electron transport and expanded interlayer spacing. Additionally, 500-Ti3C2Tx exhibits improved cycling stability with 97.6% capacity retention after 5000 cycles at 10 A/g. This method offers a scalable and industrially viable strategy to simultaneously enhance the electrical conductivity and charge storage capabilities of MXenes.

Keywords: supercapacitors, Gas-thermal penetration, MXene, Carbon deposition

Suggested Citation

Zhang, Zhirong and Liu, Zhenyu and Lin, Zewei and Xu, Zhiming and Wang, Ruitao and Yao, Zhongping and Wang, Wei, Carbon Modified Mxene Through Gas Thermal Penetration Treatment for Electrochemical Energy Storage. Available at SSRN: https://ssrn.com/abstract=5099030 or http://dx.doi.org/10.2139/ssrn.5099030

Zhirong Zhang (Contact Author)

Yancheng Institute of Technology ( email )

No.9 Xiwang Avenue
Yancheng, 224051
China

Zhenyu Liu

Yancheng Institute of Technology ( email )

No.9 Xiwang Avenue
Yancheng, 224051
China

Zewei Lin

South University of Science and Technology of China ( email )

No 1088, Xueyuan Rd.
District of Nanshan
Shenzhen, 518055
China

Zhiming Xu

Harbin Institute of Technology ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

Ruitao Wang

Tianjin University ( email )

92, Weijin Road
Nankai District
Tianjin, 300072
China

Zhongping Yao

Harbin Institute of Technology ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

Wei Wang

Yancheng Institute of Technology ( email )

No.9 Xiwang Avenue
Yancheng, 224051
China

Do you have a job opening that you would like to promote on SSRN?

Paper statistics

Downloads
14
Abstract Views
85
PlumX Metrics