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Updated: Apr 15, 2026

Evaluating the Electrochemical Properties of Supercapacitors using the Three-Electrode System
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Beyond Titanium Carbide: The Promise of Vanadium-Based MXenes for Aqueous Supercapacitors
Jingyi Tan1, Yi Tang2, Zhao Bi3
1The First Division, Institute of Hygiene of Ordance Industry, Xi'an 710065, China.
Abstract:
Aqueous supercapacitors are a class of crucial high-power, long-life, safe and reliable energy storage devices, with their performance fundamentally dependent on electrode materials. Two-dimensional (2D) vanadium-based MXenes, possessing rich multivalent redox activity and tunable layered structures, have emerged as one of highly promising electrode candidates, exhibiting significantly superior specific capacitance and pseudocapacitive properties compared to conventional Ti3C2Tz. To overcome inherent limitations in conductivity and structural stability, this review summarizes strategies for regulating composition and microstructure through transition metal solid solution and medium-/high-entropy design. These approaches synergistically optimize electron conduction, expand ion migration pathways, and suppress electrode degradation, thereby comprehensively enhancing rate performance, cycle life, and energy density. This review systematically reveals the composition-structure-performance relationships, providing critical design insights and theoretical foundations for developing next-generation high-performance, long-life aqueous MXene-based supercapacitors.
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