Organics-Free Aqueous Hybrid Electrolyte for High-Performance Zinc Ion Hybrid Capacitors Operating at Low Temperature

26 Pages Posted: 7 Feb 2023

See all articles by Yunxun Pu

Yunxun Pu

Lanzhou Jiaotong University

Chengshuai Wang

Lanzhou Jiaotong University

Jianze Feng

Chinese Academy of Sciences (CAS) - Lanzhou Institute of Chemical Physics

Yongtai Xu

Chinese Academy of Sciences (CAS) - Lanzhou Institute of Chemical Physics

Kilimai Su

Chinese Academy of Sciences (CAS) - Lanzhou Institute of Chemical Physics

Bingjun Yang

Chinese Academy of Sciences (CAS) - Lanzhou Institute of Chemical Physics

Guangke Tian

Lanzhou Jiaotong University

Junwei Lang

Chinese Academy of Sciences (CAS) - Lanzhou Institute of Chemical Physics

Abstract

Aqueous zinc ion chemistry is the hot topic of new energy storage technologies nowadays for its high intrinsic safety as well as its advantages in terms of environmental protection and price. However, the freezing of water at low temperatures limit the practical application to a broad range of temperatures. Herein, in view of the disturbing effect of Mg(ClO4)2 on hydrogen bond of water molecules, a novel anti-freezing electrolyte (0.4 m ZnSO4 + 2.7 m Mg(ClO4)2) is developed, which features ultra-low freezing point (< -80 ℃) and superior conductivity (7.50 mS cm-1 at -60 ℃). Consequently, this organics-free hybrid electrolyte renders the as-built aqueous zinc ion hybrid capacitors (AZHCs) available to operate even at -60 ℃ with a high potential window of 2.4 V. Moreover, at -30 ℃, such AZHCs devices exhibit the highest specific capacity (123 mA h g-1), the maximum energy density (126 Wh kg-1 at 1050 W kg-1), an excellent rate performance (75.8 Wh kg-1 at 10495.4 Wh kg-1) and a stable working life over 32 000 cycles. This research points to a feasible strategy to improve the cryogenic performance of AZHCs with high energy density.

Keywords: Keywords: Auqeous zinc ion hybrid capacitor, Low temperature, Magnesium perchlorate, High energy density

Suggested Citation

Pu, Yunxun and Wang, Chengshuai and Feng, Jianze and Xu, Yongtai and Su, Kilimai and Yang, Bingjun and Tian, Guangke and Lang, Junwei, Organics-Free Aqueous Hybrid Electrolyte for High-Performance Zinc Ion Hybrid Capacitors Operating at Low Temperature. Available at SSRN: https://ssrn.com/abstract=4350300 or http://dx.doi.org/10.2139/ssrn.4350300

Yunxun Pu

Lanzhou Jiaotong University ( email )

China

Chengshuai Wang

Lanzhou Jiaotong University ( email )

China

Jianze Feng

Chinese Academy of Sciences (CAS) - Lanzhou Institute of Chemical Physics ( email )

Lanzhou, 730000
China

Yongtai Xu

Chinese Academy of Sciences (CAS) - Lanzhou Institute of Chemical Physics ( email )

Lanzhou, 730000
China

Kilimai Su

Chinese Academy of Sciences (CAS) - Lanzhou Institute of Chemical Physics ( email )

Lanzhou, 730000
China

Bingjun Yang

Chinese Academy of Sciences (CAS) - Lanzhou Institute of Chemical Physics ( email )

Lanzhou, 730000
China

Guangke Tian (Contact Author)

Lanzhou Jiaotong University ( email )

China

Junwei Lang

Chinese Academy of Sciences (CAS) - Lanzhou Institute of Chemical Physics ( email )

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