Scalable top-down synthesis of functional carbon nanosheets by aronia fruit powder for Li+ and K+ storage
- Abstract
- Carbon nanosheets (CNSs) have been used in various applications, ranging from energy storage to drug delivery. CNSs are conventionally synthesized by chemical vapor deposition, but their high cost and non-scalability prompted the development of alternative synthesis routes. More scalable methods such as the sol-gel process still suffer from its complicated synthetic steps with delicate conditions. Here, we demonstrate for the first time a unique top-down synthesis of CNSs from aronia fruit powder, which is simple, scalable, and cost-effective. Aronia-derived CNS can be fabricated at various heating temperatures (500, 700, and 90 0 degrees C) and under different atmospheres (N-2/H-2 and NH3), which can easily tune the overall physicochemical properties of the CNS. We evaluated the electrochemical performance of the CNS for potential applications in Li- and K-ion batteries, in which the CNS showed stable electrochemical performance even at a high current density (1000 mA g(-1)). Because of the high-throughput nature of this synthetic approach, the aronia-derived CNSs could be very useful in developing novel applications at an industrial scale. (C) 2021 Published by Elsevier Ltd.
- Author(s)
- 정준영; 정지원; 김찬훈; 김일두
- Issued Date
- 2021
- Type
- Article
- Keyword
- Carbon; Nanosheet; Lithium; Potassium; Aronia; Battery
- DOI
- 10.1016/j.electacta.2021.138068
- URI
- https://oak.ulsan.ac.kr/handle/2021.oak/8973
https://ulsan-primo.hosted.exlibrisgroup.com/primo-explore/fulldisplay?docid=TN_cdi_crossref_primary_10_1016_j_electacta_2021_138068&context=PC&vid=ULSAN&lang=ko_KR&search_scope=default_scope&adaptor=primo_central_multiple_fe&tab=default_tab&query=any,contains,Scalable%20top-down%20synthesis%20of%20functional%20carbon%20nanosheets%20by%20aronia%20fruit%20powder%20for%20Li%2B%20and%20K%2B%20storage&offset=0&pcAvailability=true
- Publisher
- ELECTROCHIMICA ACTA
- Location
- 영국
- Language
- 영어
- ISSN
- 0013-4686
- Citation Volume
- 377
- Citation Number
- 1
- Citation Start Page
- 138068
- Citation End Page
- 138068
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Appears in Collections:
- Engineering > Material Engineering
- 공개 및 라이선스
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