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Cited 136 time in webofscience Cited 200 time in scopus
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Dendritic Nanostructured Waste Copper Wires for High-Energy Alkaline Batteryopen access

Authors
Chodankar, Nilesh R.Ji, Su-HyeonHan, Young-KyuKim, Do-Heyoung
Issue Date
Jan-2020
Publisher
SHANGHAI JIAO TONG UNIV PRESS
Keywords
Alkaline batteries; Dendritic nanostructure; NiCo-hydroxide; Waste Cu wires
Citation
NANO-MICRO LETTERS, v.12, no.1
Indexed
SCIE
SCOPUS
Journal Title
NANO-MICRO LETTERS
Volume
12
Number
1
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/7050
DOI
10.1007/s40820-019-0337-2
ISSN
2311-6706
2150-5551
Abstract
Rechargeable alkaline batteries (RABs) have received remarkable attention in the past decade for their high energy, low cost, safe operation, facile manufacture, and eco-friendly nature. To date, expensive electrode materials and current collectors were predominantly applied for RABs, which have limited their real-world efficacy. In the present work, we propose a scalable process to utilize electronic waste (e-waste) Cu wires as a cost-effective current collector for high-energy wire-type RABs. Initially, the vertically aligned CuO nanowires were prepared over the waste Cu wires via in situ alkaline corrosion. Then, both atomic-layer-deposited NiO and NiCo-hydroxide were applied to the CuO nanowires to form a uniform dendritic-structured NiCo-hydroxide/NiO/CuO/Cu electrode. When the prepared dendritic-structured electrode was applied to the RAB, it showed excellent electrochemical features, namely high-energy-density (82.42 Wh kg(-1)), excellent specific capacity (219 mAh g(-1)), and long-term cycling stability (94% capacity retention over 5000 cycles). The presented approach and material meet the requirements of a cost-effective, abundant, and highly efficient electrode for advanced eco-friendly RABs. More importantly, the present method provides an efficient path to recycle e-waste for value-added energy storage applications.
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