Citation
Guo, Tiezhu and Ren, Yuchuan and Liu, Yang and Hyun, Woo Jin and Tan, Kar Ban and Guo, Qin and Zhou, Di
(2026)
Screen-printed MXene for high-performance all-solid-state supercapacitors.
Journal of Power Sources, 684.
art. no. 240426.
pp. 1-7.
ISSN 0378-7753
Abstract
Micro interdigitated supercapacitors (MSC) have attracted considerable attention due to their high-power density, fast charge-discharge capability, and excellent on-chip integration potential, making them promising candidates for wearable and flexible electronics. However, the practical performance of all-solid-state MSC is often limited by the low ionic conductivity and poor interfacial contact of conventional solid electrolytes. In this work, a high-viscosity Ti3C2Tx MXene ink suitable for screen-printing was developed as the electrode material, combined with a composite electrolyte composed of polyvinyl alcohol (PVA), polyethylene glycol (PEG), and glycerol (GL), to fabricate high-performance all-solid-state MSC. The PVA-PEG-GL gel electrolyte simultaneously delivers high ionic conductivity, excellent mechanical flexibility, and rapid self-healing capability, effectively improving electrode-electrolyte interfacial contact. Benefiting from efficient electron/ion transport, the fabricated devices exhibit high volumetric energy density and favorable balance between energy density and power density. This work provides an effective strategy for the scalable fabrication of flexible and miniaturized energy storage devices.
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