Insights into 2D/2D MXene Heterostructures for Improved Synergy in Structure toward Next‐Generation Supercapacitors: A Review
Central Electrochemical Research Institute · Academy of Scientific and Innovative Research
Abstract
Abstract 2D interfacial heterostructures have found an unassailable status in energy storage systems, particularly in supercapacitors citing the intriguing structural and electrochemical characteristics. Exactly a decade ago, MXene, a promising 2D transition metal carbide/nitride/carbonitride was found to possess excellent conductivity, hydrophilicity, laudable charge storage opportunities, and enriched surface functionalities conducive for supercapacitors with inherent challenging shortcomings. To substantially improve, assembled 2D/2D MXene heterostructures exhibit commendable performance backed by the fact of swift increase in research interest. In this review, state‐of‐the‐art research progress in material…
Citation impact
- FWCI
- 26.00
- Percentile
- 100%
- References
- 271
Authors
4- KNKabeer Nasrin
Central Electrochemical Research Institute, Academy of Scientific and Innovative Research
- SVSudharshan Vasudevan
Central Electrochemical Research Institute
- KSK. Subramani
Central Electrochemical Research Institute
- MSM. SathishCorresponding
Central Electrochemical Research Institute, Academy of Scientific and Innovative Research
Topics & keywords
- Supercapacitor
- Materials science
- Heterojunction
- Nanotechnology
- MXenes
- Electrolyte
- Energy storage
- Electrochemistry
- Affordable and clean energy