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Updated: Jan 7, 2026

Fabrication of Carbon-Based Ionic Electromechanically Active Soft Actuators
Published on: April 25, 2020
Dynamic modulation of ionic and electronic pathways in flexible SnS2-based interdigitated solid-state supercapacitors
Premkumar Jayaraman1,2,3, Hamed Pourzolfaghar2,3, Yuan-Yao Li2,3
1Futuristic Energy Storage Technology Lab (FESTL), Department of Chemistry, Faculty of Engineering and Technology, SRM Institute of Science and Technology, Kattankulathur-603203, Chengalpattu Dt, Tamil Nadu, India. helena@srmist.edu.in.
None:
The interdigitated super capacitor (ISC) offers a high-efficiency energy storage approach, utilizing narrowly spaced electrode fingers to lower ionic resistance and promote faster ion transport at the electrode-electrolyte interface. A symmetric flexible device was fabricated using electron beam evaporation, where SnS2 thin films deposited by physical vapor deposition (PVD) served as active electrodes. At a sweep rate of 5 mV s-1, the ISC demonstrated pronounced pseudocapacitive behavior, delivering a high volumetric capacitance of 1129.1 F cm-3. We introduced and correlated the key transport properties, including the average ionic transference number (t̄ion), ionic conductivity (σAC), electron transfer characteristics (k0 and D0), charge carrier mobility and charge carrier density (μc and nc), analyzed under OFF, ON, and VD-state conditions. The ISC showed superior electrochemical characteristics notable values such as σAC ≈ 6.788 × 10-4 S cm-1, D0 ≈ 3.635 × 10-11 cm2 s-1, and μc ≈ 65.11 cm2 V-1 s-1. Its enhanced energy delivery capacity was further validated by powering red LEDs within a 4 V circuit, underscoring its suitability for integration into flexible and compact energy storage technologies.
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