Triboelectric Nanogenerators Based on 2D Materials: From Materials and Devices to Applications

被引:19
作者
Zhou, Yukai [1 ]
Zhang, Jia-Han [1 ]
Li, Songlin [1 ]
Qiu, Hao [1 ]
Shi, Yi [1 ]
Pan, Lijia [1 ]
机构
[1] Nanjing Univ, Collaborat Innovat Ctr Adv Microstruct, Sch Elect Sci & Engn, Nanjing 210093, Peoples R China
关键词
triboelectric nanogenerators; 2D materials; sensing; mechanical energy harvesting; NITRIDE H-BN; GRAPHENE-OXIDE; OUTPUT PERFORMANCE; WAVE ENERGY; TRANSISTOR; SHEETS; SUPERCAPACITOR; CONTACT; SENSOR; LAYER;
D O I
10.3390/mi14051043
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Recently, there has been an increasing consumption of fossil fuels such as oil and natural gas in both industrial production and daily life. This high demand for non-renewable energy sources has prompted researchers to investigate sustainable and renewable energy alternatives. The development and production of nanogenerators provide a promising solution to address the energy crisis. Triboelectric nanogenerators, in particular, have attracted significant attention due to their portability, stability, high energy conversion efficiency, and compatibility with a wide range of materials. Triboelectric nanogenerators (TENGs) have many potential applications in various fields, such as artificial intelligence (AI) and the Internet of Things (IoT). Additionally, by virtue of their remarkable physical and chemical properties, two-dimensional (2D) materials, such as graphene, transition metal dichalcogenides (TMDs), hexagonal boron nitride (h-BN), MXenes, and layered double hydroxides (LDHs), have played a crucial role in the advancement of TENGs. This review summarizes recent research progress on TENGs based on 2D materials, from materials to their practical applications, and provides suggestions and prospects for future research.
引用
收藏
页数:27
相关论文
共 122 条
[1]   Two-Dimensional Transition Metal Dichalcogenides and Their Charge Carrier Mobilities in Field-Effect Transistors [J].
Ahmed, Sohail ;
Yi, Jiabao .
NANO-MICRO LETTERS, 2017, 9 (04) :1-23
[2]   2D metal carbides and nitrides (MXenes) for energy storage [J].
Anasori, Babak ;
Lukatskaya, Maria R. ;
Gogotsi, Yury .
NATURE REVIEWS MATERIALS, 2017, 2 (02)
[3]  
[Anonymous], ROT MECH EN NAN, DOI [10.1021/nl4013002, DOI 10.1021/NL4013002]
[4]   Massive enhancement in power output of BoPET-paper triboelectric nanogenerator using 2D-hexagonal boron nitride nanosheets [J].
Bhavya, Ainikulangara Sundaran ;
Varghese, Harris ;
Chandran, Achu ;
Surendran, Kuzhichalil Peethambharan .
NANO ENERGY, 2021, 90
[5]   Friction coefficient dependence on electrostatic tribocharging [J].
Burgo, Thiago A. L. ;
Silva, Cristiane A. ;
Balestrin, Lia B. S. ;
Galembeck, Fernando .
SCIENTIFIC REPORTS, 2013, 3
[6]   Self-healable, super-stretchable and shape-adaptive triboelectric nanogenerator based on double cross-linked PDMS for electronic skins [J].
Cai, Ya-Wei ;
Wang, Gui-Gen ;
Mei, Yi-Cheng ;
Zhao, Da-Qiang ;
Peng, Jia-Jian ;
Sun, Na ;
Zhang, Hua-Yu ;
Han, Jie-Cai ;
Yang, Ya .
NANO ENERGY, 2022, 102
[7]   Highly sensitive self-powered pressure and strain sensor based on crumpled MXene film for wireless human motion detection [J].
Cao, Yule ;
Guo, Yinben ;
Chen, Zixi ;
Yang, Weifeng ;
Li, Kerui ;
He, Xingyu ;
Li, Jianmin .
NANO ENERGY, 2022, 92
[8]   Energy Harvesting from Human Biomechanical Energy for Health-monitoring Devices [J].
Chaudhary, Parul ;
Azad, Puneet .
IETE JOURNAL OF RESEARCH, 2021, 67 (01) :74-81
[9]   Triboelectric nanogenerators for a macro-scale blue energy harvesting and self-powered marine environmental monitoring system [J].
Chen, Huamin ;
Xing, Chao ;
Li, Yuliang ;
Wang, Jun ;
Xu, Yun .
SUSTAINABLE ENERGY & FUELS, 2020, 4 (03) :1063-1077
[10]   Enhanced stretchable graphene-based triboelectric nanogenerator via control of surface nanostructure [J].
Chen, Huamin ;
Xu, Yun ;
Zhang, Jiushuang ;
Wu, Weitong ;
Song, Guofeng .
NANO ENERGY, 2019, 58 :304-311