TY - JOUR
T1 - Recent Advances and Prospects of Fiber-Shaped Rechargeable Aqueous Alkaline Batteries
AU - Yang, Jiao
AU - Chen, Jingwei
AU - Wang, Zhe
AU - Wang, Zhixun
AU - Zhang, Qichong
AU - He, Bing
AU - Chen, Mengxiao
AU - Kang, Lixing
AU - Qi, Miao
AU - Zhang, Ting
AU - Zhang, Haozhe
AU - Chen, Ming
AU - Shum, Ping
AU - Wei, Lei
N1 - Publisher Copyright:
© 2021 The Authors. Advanced Energy and Sustainability Research published by Wiley-VCH GmbH.
PY - 2021/10
Y1 - 2021/10
N2 - The prosperity in portable and wearable electronics has stimulated researchers to develop safe, environmentally friendly, and efficient energy-storage technologies. Increased efforts have recently been made to fabricate high-performance rechargeable aqueous alkaline batteries (RAABs) as the frontrunner to complement and even replace the dominant lithium-ion batteries for large-scale energy storage due to the limited lithium resources and the use of flammable and toxic organic electrolyte. Compared with the conventional planar RAABs, fiber-shaped RAABs (FRAABs) manifest several intriguing features, such as miniaturization, adaptability, and weavability, making them an attractive candidate to power wearable and portable electronics. Herein, an overview of the recent progress in FRAABs by categories of fiber-shaped aqueous rechargeable Zn-based batteries, Fe−Ni batteries, and Bi−Ni batteries, with respect to the active electrode materials, device configurations, and battery properties, is comprehensively presented. Finally, the remaining challenges and possible solutions are emphasized as a useful guide for the further development of FRAABs.
AB - The prosperity in portable and wearable electronics has stimulated researchers to develop safe, environmentally friendly, and efficient energy-storage technologies. Increased efforts have recently been made to fabricate high-performance rechargeable aqueous alkaline batteries (RAABs) as the frontrunner to complement and even replace the dominant lithium-ion batteries for large-scale energy storage due to the limited lithium resources and the use of flammable and toxic organic electrolyte. Compared with the conventional planar RAABs, fiber-shaped RAABs (FRAABs) manifest several intriguing features, such as miniaturization, adaptability, and weavability, making them an attractive candidate to power wearable and portable electronics. Herein, an overview of the recent progress in FRAABs by categories of fiber-shaped aqueous rechargeable Zn-based batteries, Fe−Ni batteries, and Bi−Ni batteries, with respect to the active electrode materials, device configurations, and battery properties, is comprehensively presented. Finally, the remaining challenges and possible solutions are emphasized as a useful guide for the further development of FRAABs.
KW - aqueous electrolytes
KW - fiber-shaped devices
KW - flexible electrodes
KW - rechargeable alkaline batteries
KW - wearable electronics
UR - https://www.scopus.com/pages/publications/85136693066
U2 - 10.1002/aesr.202100060
DO - 10.1002/aesr.202100060
M3 - 文献综述
AN - SCOPUS:85136693066
SN - 2699-9412
VL - 2
JO - Advanced Energy and Sustainability Research
JF - Advanced Energy and Sustainability Research
IS - 10
M1 - 2100060
ER -