Functionalization Strategies of MXene Architectures for Electrochemical Energy Storage Applications

被引:1
作者
Liu, Shude [1 ,2 ]
Zhang, Huilin [1 ]
Chen, Jieming [1 ]
Peng, Xue [1 ]
Chai, Yafei [1 ]
Shao, Xian [1 ]
He, Yi [1 ]
Wang, Xiaoqiang [1 ]
Ding, Bin [1 ,3 ]
机构
[1] Donghua Univ, Coll Text, Minist Educ, Engn Res Ctr Tech Text, Shanghai 201620, Peoples R China
[2] Nagoya Univ, Grad Sch Engn, Dept Mat Proc Engn, Nagoya 4648603, Japan
[3] Donghua Univ, Coll Text, Innovat Ctr Text Sci & Technol, Shanghai 201620, Peoples R China
基金
中国国家自然科学基金;
关键词
MXene; functionalization strategies; electrochemical energy storage; structural design; HYDROGEN EVOLUTION; ION BATTERY; DEPOSITION; CAPACITY; CARBIDE;
D O I
10.3390/en18051223
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
MXene, an emerging class of two-dimensional materials, has garnered significant attention in electrochemical energy storage applications due to its high specific surface area, tunable surface functional groups, excellent electrical conductivity, and mechanical stability. However, their practical application in energy storage devices remains challenged by issues such as the stacking of their layered structure, surface degradation, and limited ion diffusion properties. Functionalization has emerged as a key strategy to enhance the performance of MXene materials. By modulating surface functional groups, doping with various elements, and integrating with other materials, researchers have significantly improved the electrical conductivity, chemical stability, ion transport properties, and mechanical strength of MXenes. This review provides a comprehensive overview of MXene materials, categorizing them and highlighting their advantages in electrochemical energy storage applications. It also examines recent advancements in MXene preparation and optimized synthesis strategies. In-depth discussions are presented on the functionalization of MXenes and their applications in energy storage devices, including supercapacitors, lithium-ion batteries, and sodium-ion batteries. Finally, the review concludes with a summary of the practical applications of MXenes and explores future research directions, aiming to guide further developments in the energy storage field.
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页数:29
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  • [1] Machine Learning-Driven Discovery of Key Descriptors for CO2 Activation over Two-Dimensional Transition Metal Carbides and Nitrides
    Abraham, B. Moses
    Pique, Oriol
    Khan, Mohd Aamir
    Vines, Francesc
    Illas, Francesc
    Singh, Jayant K.
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2023, 15 (25) : 30117 - 30126
  • [2] Atomic layer deposition of SnO2 on MXene for Li-ion battery anodes
    Ahmed, Bilal
    Anjum, Dalaver H.
    Gogotsi, Yury
    Alshareef, Husam N.
    [J]. NANO ENERGY, 2017, 34 : 249 - 256
  • [3] Graphene quantum dots induced porous orientation of holey graphene nanosheets for improved electrocatalytic activity
    Ali, Mumtaz
    Riaz, Rabia
    Anjum, Aima Sameen
    Sun, Kyung Chul
    Li, Hui
    Jeong, Sung Hoon
    Ko, Min Jae
    [J]. CARBON, 2021, 171 : 493 - 506
  • [4] Fluorine- and Acid-Free Strategy toward Scalable Fabrication of Two-Dimensional MXenes for Sodium-Ion Batteries
    An, Yongling
    Tian, Yuan
    Man, Quanyan
    Shen, Hengtao
    Liu, Chengkai
    Xiong, Shenglin
    Feng, Jinkui
    [J]. NANO LETTERS, 2023, 23 (11) : 5217 - 5226
  • [5] Maximized ion accessibility in the binder-free layer-by-layer MXene/CNT film prepared by the electrophoretic deposition for rapid hybrid capacitive deionization
    Cai, Yanmeng
    Zhang, Le
    Fang, Rongli
    Wang, Yue
    Wang, Jixiao
    [J]. SEPARATION AND PURIFICATION TECHNOLOGY, 2022, 292
  • [6] Ti3C2Tx MXene/carbon composites for advanced supercapacitors: Synthesis, progress, and perspectives
    Cai, Yanqing
    Chen, Xinggang
    Xu, Ying
    Zhang, Yalin
    Liu, Huijun
    Zhang, Hongjuan
    Tang, Jing
    [J]. CARBON ENERGY, 2024, 6 (02)
  • [7] Chemically modified MXene nanoflakes for enhancing the output performance of triboelectric nanogenerators
    Cao, Viet Anh
    Kim, Minje
    Lee, Sol
    Van, Phuoc Cao
    Jeong, Jong-Ryul
    Park, Pangun
    Nah, Junghyo
    [J]. NANO ENERGY, 2023, 107
  • [8] A review of how to improve Ti3C2Tx MXene stability
    Cao, Wei
    Nie, Junli
    Cao, Ye
    Gao, Chengjie
    Wang, Mingsheng
    Wang, Weiwei
    Lu, Xiaoli
    Ma, Xiaohua
    Zhong, Peng
    [J]. CHEMICAL ENGINEERING JOURNAL, 2024, 496
  • [9] Self-Adhesive Polydimethylsiloxane Foam Materials Decorated with MXene/Cellulose Nanofiber Interconnected Network for Versatile Functionalities
    Chen, Hai-Yang
    Chen, Zuan-Yu
    Mao, Min
    Wu, Yu-Yue
    Yang, Fan
    Gong, Li-Xiu
    Zhao, Li
    Cao, Cheng-Fei
    Song, Pingan
    Gao, Jie-Feng
    Zhang, Guo-Dong
    Shi, Yong-Qian
    Cao, Kun
    Tang, Long-Cheng
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2023, 33 (48)
  • [10] Metal-Bonded Atomic Layers of Transition Metal Carbides (MXenes)
    Cheng, Zongju
    Du, Zhiguo
    Chen, Hao
    Zhao, Qi
    Shi, Yu
    Wang, Haiyang
    Ye, Yuxuan
    Yang, Shubin
    [J]. ADVANCED MATERIALS, 2023, 35 (39)