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Bowling Collision Effect of CoMo6 Polyoxometalate Units Enables Wide Temperature Range from-20 to 60 °C and Dendrite Mitigation Li-S Batteries

delete2024-08-03
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PRE
AI
Y
Yiding Li
K
Kai Sun
Y
Yujun Fu
S
Siqi Wang
C
Chenyu Zhuge
X
Xiaoqiang Yin
Z
Zhibo Yang
Z
Zhenhua Li
D
Dequan Liu
王曦 (Xi Wang) *
D
Deyan He *
DOI:10.1002/adma.202406343delete
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Abstract

Abstract

En 中文
To improve the performance of Lithium-Sulfur (Li-S) batteries, the reaction catalysts of lithium polysulfides (LiPSs) reactions should have the characteristics of large surface area, efficient atomic utilization, high conductivity, small size, good stability, and strong adjustability. Herein, Anderson-type polyoxometalate ([TMMo6O24](n-), TM = Co, Ni, Fe, represented by TMMo6 POMs) are used as the modified materials for Li-S battery separator. By customizing the central metal atoms, this work gains insights into the layer-by-layer electron transfer mechanism between TMMo6 units and LiPSs, similar to the collision effect of a bowling ball. Theoretical analysis and in situ experimental characterization show that the changes of CoMo6 units with moderate binding energy and lowest Gibbs free energy result in the formation of robust polar bonds and prolonged S & horbar;S bonds after adsorption. Hence, the representative Li-S battery with CoMo6 and graphene composite modified separator has a high initial capacity of 1588.6 mA h g(-1) at 0.2 C, excellent cycle performance of more than 3000 cycles at 5 C, and uniform Li+ transport over 1900 h. More importantly, this work has revealed the inherent contradiction between the kinetics and thermodynamics, achieving a stable cycle in the temperature range of -20 to 60 degrees C.
Keywords:
catalytic
clusters
in situ characterizations
polyoxometalate
wide temperature range

Journal

Advanced Materials cover
Advanced Materials
IF:
26.8
Papers:
3.4W
Citations:
46.0W

Organization

L
lanzhou university
Scholars:
4.2W
Papers: 2.6W
Citations: 27
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