A Review on MXene-Based Textile Materials for Flexible Energy Storage Application

被引:2
作者
Vajpeyee, Pranjul [1 ]
Maity, Subhankar [1 ]
Patra, Arun Kumar [2 ]
机构
[1] Uttar Pradesh Text Technol Inst, Dept Text Technol, 11-208 Parwati Bagla Rd, Kanpur 208001, UP, India
[2] Uttar Pradesh Text Technol Inst, Dept Text Chem, Kanpur, UP, India
关键词
Conductive Textiles; Conductivity; Energy Storage; MXene; Supercapacitors; Textile Capacitor; FIBER; PERFORMANCE; GRAPHENE; SUPERCAPACITOR; ARCHITECTURE; CAPACITANCE; FABRICATION; LIGHTWEIGHT; COMPOSITES; NANOSHEETS;
D O I
10.1177/24723444241295415
中图分类号
TB3 [工程材料学]; TS1 [纺织工业、染整工业];
学科分类号
0805 ; 080502 ; 0821 ;
摘要
The revelation of MXenes as two-dimensional (2D) transition metal carbides and nitrides, in the midst of their exceptional features like rich surface chemistry, tunable terminations, metallic conductivity, and exceptional processability, has completely changed the realm of material chemistry research. The introduction of MXene has been contributive to the design and development of various textile e-devices. Among these, textile-based supercapacitors (TSCs), which encompass fiber, yarn, and fabric supercapacitors, are developed and have been manifested to be useful in powering wearable electronics. The present article summarizes historical developments of energy storage devices, types of super-capacitors like double-layered capacitors, hybrid capacitors, and pseudo-capacitors, their relative merits and demerits. Various top-down and bottom-up approaches of MXene synthesis processes are discussed with their scopes and limitations. Different process of coating/loading of MXene onto textile substrates viz. dip coating, electro-spinning and wet spinning are described and morphological cum surface characteristics of the developed coated textiles are highlighted. Mechanical and electrical properties of MXene based textiles have been summarized and compared with various other electro-conductive textiles prepared from conductive polymers, CNTs, and rGO. The performance of MXene-based textiles for energy storage applications is critically reviewed and summarized.
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页数:26
相关论文
共 132 条
[1]   Engineering Graphene Flakes for Wearable Textile Sensors via Highly Scalable and Ultrafast Yarn Dyeing Technique [J].
Afroj, Shaila ;
Karim, Nazmul ;
Wang, Zihao ;
Tan, Sirui ;
He, Pei ;
Holwill, Matthew ;
Ghazaryan, Davit ;
Fernando, Anura ;
Novoselov, Kostya S. .
ACS NANO, 2019, 13 (04) :3847-3857
[2]   Recent Advances in 2D MXene Integrated Smart-Textile Interfaces for Multifunctional Applications [J].
Ahmed, Abbas ;
Hossain, Md Milon ;
Adak, Bapan ;
Mukhopadhyay, Samrat .
CHEMISTRY OF MATERIALS, 2020, 32 (24) :10296-10320
[3]  
Altin Y., 2020, Advances in functional and protective textiles, P493
[4]  
[Anonymous], 2019, 2D metal carbides and nitrides (MXenes)
[5]  
Arjun D., 2014, JTATM, V8, P1
[6]   2D MXenes: Electromagnetic property for microwave absorption and electromagnetic interference shielding [J].
Cao, Mao-Sheng ;
Cai, Yong-Zhu ;
He, Peng ;
Shu, Jin-Cheng ;
Cao, Wen-Qiang ;
Yuan, Jie .
CHEMICAL ENGINEERING JOURNAL, 2019, 359 :1265-1302
[7]   A review of how to improve Ti3C2Tx MXene stability [J].
Cao, Wei ;
Nie, Junli ;
Cao, Ye ;
Gao, Chengjie ;
Wang, Mingsheng ;
Wang, Weiwei ;
Lu, Xiaoli ;
Ma, Xiaohua ;
Zhong, Peng .
CHEMICAL ENGINEERING JOURNAL, 2024, 496
[8]   MXene-Reinforced Cellulose Nanofibril Inks for 3D-Printed Smart Fibres and Textiles [J].
Cao, Wen-Tao ;
Ma, Chang ;
Mao, Dong-Sheng ;
Zhang, Juan ;
Ma, Ming-Guo ;
Chen, Feng .
ADVANCED FUNCTIONAL MATERIALS, 2019, 29 (51)
[9]   Binary Strengthening and Toughening of MXene/Cellulose Nanofiber Composite Paper with Nacre-Inspired Structure and Superior Electromagnetic Interference Shielding Properties [J].
Cao, Wen-Tao ;
Chen, Fei-Fei ;
Zhu, Ying-Jie ;
Zhang, Yong-Gang ;
Jiang, Ying-Ying ;
Ma, Ming-Guo ;
Chen, Feng .
ACS NANO, 2018, 12 (05) :4583-4593
[10]   Reduced Graphene Oxide-Wrapped MoO3 Composites Prepared by Using Metal-Organic Frameworks as Precursor for All-Solid-State Flexible Supercapacitors [J].
Cao, Xiehong ;
Zheng, Bing ;
Shi, Wenhui ;
Yang, Jian ;
Fan, Zhanxi ;
Luo, Zhimin ;
Rui, Xianhong ;
Chen, Bo ;
Yan, Qingyu ;
Zhang, Hua .
ADVANCED MATERIALS, 2015, 27 (32) :4695-4701