Fibrous all-in-one monolith electrodes with a biological gluing layer and a membrane shell for weavable lithium-ion batteries

被引:13
|
作者
Ha, Sung Hoon [1 ]
Kim, Soo Jin [2 ,3 ]
Kim, Hyoungjun [2 ,4 ]
Lee, Chae Won [1 ]
Shin, Kyu Hang [1 ]
Park, Hae Won [1 ]
Kim, Soonwoo [1 ,5 ]
Lim, Yein [5 ]
Yi, Hyunjung [5 ]
Lim, Jung Ah [2 ,4 ]
Lee, Yun Jung [1 ]
机构
[1] Hanyang Univ, Dept Energy Engn, Seoul 133791, South Korea
[2] Korea Inst Sci & Technol, Ctr Optoelect Mat & Devices, Seoul 136791, South Korea
[3] Seoul Natl Univ, Dept Mat Sci & Engn, Seoul 08826, South Korea
[4] KUST, Dept Nanomat & Nanosci, Daejeon 34113, South Korea
[5] Korea Inst Sci & Technol, Postsilicon Semicond Inst, Seoul 02792, South Korea
基金
新加坡国家研究基金会;
关键词
WEARABLE ENERGY-STORAGE; CONDUCTIVE NANOMESH; FIBER; PERFORMANCE; YARNS; PAPER; OXIDE; SUPERCAPACITORS; PROGRESS; CATHODE;
D O I
10.1039/c8ta01405a
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
The increasing demand for wearable devices ultimately requires the development of energy storage devices with wide structural versatility, lightweight and high energy density. Although various flexible batteries have been developed based on two-dimensional and one-dimensional platforms, truly weavable batteries with high capacity and elongation capability have not been materialized yet. Herein, we report weavable lithium ion batteries (LIBs) with high capacity by developing fibrous all-in-one electrode threads based on nanosized hybrid active layers with a biological gluing inner layer and a membrane shell. The thread consists of four distinct concentric structures, a carbon fiber core as a current collector, a conductive biological gluing layer, nanohybrid active materials, and a porous membrane layer. Nanosized LiFePO4/C-rGO and Li4Ti5O12/rGO are used for cathode and anode threads, respectively. This unique all-in-one structure combined with an inline coating approach ensures flexibility and mechanical stability with a high linear capacity of 1.6 mA h cm(-1). These features all together allow for various assembly schemes such as twisting and hierarchical weaving, enabling fabric LIBs to show 50% elongation via encoded structural deformation.
引用
收藏
页码:6633 / 6641
页数:9
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