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High-capacity three-dimensional solar rechargeable micro-supercapacitor using MnO2/V2O5-based binary metal oxide nanocomposite ink
- Lee, Hee Uk;
- Jin, Joon-Hyung;
- Chung, Bong Geun
WEB OF SCIENCE
19SCOPUS
21초록
Due to the variable nature of solar cells, the development of a novel energy storage system, such as solar-charged self-powered micro-supercapacitor (MSC) power cells, is imperative. Herein, we report a pen-drawing MSC for powering portable units using high-performance binary metal oxide nanocomposite ink. For improving the capacitance of the MSC and operating its voltage up to 1.4 V, the nanocomposite ink demonstrated a redox strategy; this strategy involved fabricating MnO2, V2O5, and a conductive poly (3,4-ethylenedioxythiophene) (PEDOT) polymer onto graphene flakes as a sandwich structure. The MSC exhibited excellent electrochemical performance with an areal capacitance of 89.29 mF cm-2, a maxi-mum energy density of 0.024 mWh cm-2 at a power density of 0.35 mW cm-2, and adequate cyclic sta-bility (82 % capacitance retention after 2500 cycles). The strained MSC also exhibited mechanical stability within a potential window of 0-1.4 V at a scan rate of 100 mV s-1. Furthermore, vertically stacked MSC arrays connected in series and parallel networks were integrated with a commercial solar cell to fabricate solar-charged self-powered MSCs. The results showed that self-powered electronics integrated with pen-drawn MSCs and solar cells have potential applications in the field of solar energy storage, including por-table or wearable electronics.(c) 2022 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
키워드
- 제목
- High-capacity three-dimensional solar rechargeable micro-supercapacitor using MnO2/V2O5-based binary metal oxide nanocomposite ink
- 저자
- Lee, Hee Uk; Jin, Joon-Hyung; Chung, Bong Geun
- 발행일
- 2022-11-25
- 유형
- Article
- 권
- 115
- 페이지
- 544 ~ 553