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Division of Energy & Environmental Technology
1. Journal Articles
Biscrolled Carbon Nanotube Yarn Structured Silver-Zinc Battery
Lee, Jae Myeong
;
Choi, Changsoon
;
Kim, Ji Hwan
;
de Andrade, Monica Jung
;
Baughman, Ray H.
;
Kim, Seon Jeong
Division of Energy & Environmental Technology
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Title
Biscrolled Carbon Nanotube Yarn Structured Silver-Zinc Battery
DGIST Authors
Lee, Jae Myeong
;
Choi, Changsoon
;
Kim, Ji Hwan
;
de Andrade, Monica Jung
;
Baughman, Ray H.
;
Kim, Seon Jeong
Issued Date
2018-07
Citation
Lee, Jae Myeong. (2018-07). Biscrolled Carbon Nanotube Yarn Structured Silver-Zinc Battery. doi: 10.1038/s41598-018-29266-0
Type
Article
Article Type
Article
Keywords
LITHIUM-ION BATTERY
;
HIGH PERFORMANCES
;
SOLID-STATE
;
HIGH-ENERGY
;
FIBER
;
SUPERCAPACITOR
;
ELECTRODES
;
SEPARATOR
ISSN
2045-2322
Abstract
Flexible yarn- or fiber-based energy storing devices are attractive because of their small dimension, light weight, and suitability for integration into woven or textile application. Some Li-ion based yarn or fiber batteries were developed due to their performance advantages, realizing highly performing and practically safe wearable battery still remains a challenge. Here, high performance and safe yarn-based battery is demonstrated by embedding active materials into inner structure of yarn and using water based electrolyte. Thanks to biscrolling method, loading level of silver and zinc in yarn electrodes increased up to 99 wt%. Our high loaded Silver and Zinc yarn electrodes enables high linear capacity in liquid electrolyte (0.285 mAh/cm) and solid electrolyte (0.276 mAh/cm), which are significantly higher than previously reported fiber batteries. In additions, due to PVA-KOH based aqueous electrolyte, our yarn battery system is inflammable, non-explosive and safe. Consequently, these high-capacities enable our Silver-Zinc aqueous yarn battery to be applicable to the energy source of portable and wearable electronics like an electric watch. © 2018, The Author(s).
URI
http://hdl.handle.net/20.500.11750/9072
DOI
10.1038/s41598-018-29266-0
Publisher
Nature Publishing Group
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