Highly efficient electro-optically tunable smart-supercapacitors using an oxygen-excess nanograin tungsten oxide thin filmopen access
- Authors
- Inamdar, Akbar I.; Kim, Jongmin; Jo, Yongcheol; Woo, Hyeonseok; Cho, Sangeun; Pawar, Sambhaji M.; Lee, Seongwoo; Gunjakar, Jayavant L.; Cho, Yuljae; Hou, Bo; Cha, SeungNam; Kwak, Jungwon; Park, Youngsin; Kim, Hyungsang; Im, Hyunsik
- Issue Date
- Jul-2017
- Publisher
- ELSEVIER SCIENCE BV
- Keywords
- Multi-functional electrode; Oxygen-excess tungsten oxide; Nanograin; Electrochromism; Supercapacitor
- Citation
- SOLAR ENERGY MATERIALS AND SOLAR CELLS, v.166, pp 78 - 85
- Pages
- 8
- Indexed
- SCI
SCIE
SCOPUS
- Journal Title
- SOLAR ENERGY MATERIALS AND SOLAR CELLS
- Volume
- 166
- Start Page
- 78
- End Page
- 85
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/24792
- DOI
- 10.1016/j.solmat.2017.03.006
- ISSN
- 0927-0248
1879-3398
- Abstract
- A smart supercapacitor shares the same electrochemical processes as a conventional energy storage device while also having electrochromic functionality. The smart supercapacitor device can sense the energy storage level, which it displays in a visually discernible manner, providing increased convenience in everyday applications. Here, we report an electro-optically tunable smart supercapacitor based on an oxygen-rich nanograin WO3 electrode. The nanostructured WO3 electrode is dark blue in color in the charged state and becomes transparent in its discharged state with a high optical modulation of 82%. The supercapacitor has a specific capacitance of 228 F g(-1) at 0.25 Ag-1 with a large potential window (1.4 V). It is highly durable, exhibits good electrochemical stability over 2000 cycles, retains 75% of its initial capacitance, and exhibits high coloration efficiency (similar to 170 cm(2)/C). The excellent electrochromic and electrochemical supercapacitor properties of the electrode is due to the synergetic effect between nanograin morphology and excess oxygen. A smart-supercapacitor fabricated with an oxygen-rich nanograin WO3 electrode exhibits a superb combination of energy storage and highly-efficient electrochromic features in one device that can monitor the energy storage level through visible changes in color.
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- Appears in
Collections - College of Natural Science > Department of Physics > 1. Journal Articles
- College of Advanced Convergence Engineering > Division of System Semiconductor > 1. Journal Articles

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