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Constructing static two-electron lithium-bromide battery

delete2024-06-14
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李新亮 (Li, XL)
王艳磊 (Yanlei Wang)
J
Junfeng Lu
P
Pei Li
Z
Zhaodong Huang
G
Guojin Liang
H
Hongyan He *
C
Chunyi Zhi *
DOI:10.1126/sciadv.adl0587delete
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Abstract

Abstract

En 中文
Despite their potential as conversion-type energy storage technologies, the performance of static lithium-bromide (SLB) batteries has remained stagnant for decades. Progress has been hindered by the intrinsic liquid-liquid redox mode and single-electron transfer of these batteries. Here, we developed a high-performance SLB battery based on the active bromine salt cathode and the two-electron transfer chemistry with a Br-/Br+ redox couple by electrolyte tailoring. The introduction of NO3- improved the reversible single-electron transition of Br-, and more impressively, the coordinated Cl- anions activated the Br+ conversion to provide an additional electron transfer. A voltage plateau was observed at 3.8 V, and the discharge capacity and energy density were increased by 142 and 159% compared to the one-electron reaction benchmark. This two-step conversion mechanism exhibited excellent stability, with the battery functioning for 1000 cycles. These performances already approach the state of the art of currently established Li-halogen batteries. We consider the established two-electron redox mechanism highly exemplary for diversified halogen batteries.
Keywords:
TOTAL-ENERGY CALCULATIONS
CHEMISTRY
DENSITY
REDOX
LUMINESCENCE
CONVERSION
GRAPHENE
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Journal

Science Advances cover
Science Advances
IF:
12.5
Papers:
2.0W
Citations:
18.1W

Organization

Z
Zhengzhou University
Scholars:
6.8W
Papers: 4.4W
Citations: 8.5W
C
City University of Hong Kong
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2.3W
Papers: 3.0W
Citations: 6.1W
C
chinese academy of sciences
Scholars:
56.4W
Papers: 44.9W
Citations: 704
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