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Taeksoo Ji

Researcher at Chonnam National University

Publications -  27
Citations -  639

Taeksoo Ji is an academic researcher from Chonnam National University. The author has contributed to research in topics: Supercapacitor & Electrode. The author has an hindex of 11, co-authored 27 publications receiving 428 citations.

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Supercapacitive composite metal oxide electrodes formed with carbon, metal oxides and conducting polymers

TL;DR: In this article, a review of most popular metal oxide electrode materials are reviewed with the recent developments, focusing on the charge storage mechanism, composite electrodes and nanostructuring of the electrodes which ultimately result in better supercapacitive performance.
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Charge storage in WO3 polymorphs and their application as supercapacitor electrode material

TL;DR: In this article, a simple and facile way to synthesize four phases of tungsten oxide from same precursor materials only by changing the pH and temperature values was reported, and the electrochemical analysis of four phases indicated that the hexagonal phase is best-suited electrode material for supercapacitor.
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Facile synthesis of hierarchical mesoporous weirds-like morphological MnO2 thin films on carbon cloth for high performance supercapacitor application.

TL;DR: The as-fabricated electrode with improved performance could be ascribed as a potential electrode material for energy storage devices because of direct growth of highly porous MnO2 weirds on carbon cloth which provide more pathways for easy diffusion of electrolyte into the interior of electroactive material.
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Single-step hydrothermal synthesis of WO3-MnO2 composite as an active material for all-solid-state flexible asymmetric supercapacitor

TL;DR: In this article, a mesoporous structure of WO3-MnO2 composite was constructed by single-step hydrothermal method and used to gain superior electrochemical performance in asymmetric configuration.
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Enhanced electrochemical performance of monoclinic WO3 thin film with redox additive aqueous electrolyte

TL;DR: A simple approach is employed to enhance the supercapacitor performance of WO3 thin film and its electrochemical performance is tested in conventional and redox additive [H2SO4+hydroquinone (HQ)] electrolytes.