Unusual Hybrid Magnesium Storage Mechanism in a New Type of Bi2O2CO3 Anode

阳极 材料科学 聚苯胺 储能 电化学 化学工程 纳米技术 电极 冶金 化学 复合材料 物理化学 工程类 功率(物理) 物理 聚合物 量子力学 聚合
作者
Song Chen,Yan Du,Heping Ma,Zhitao Wang,Shuang Fan,Wenming Zhang,Hui Ying Yang
出处
期刊:Nano Letters [American Chemical Society]
卷期号:23 (21): 9788-9795 被引量:2
标识
DOI:10.1021/acs.nanolett.3c02465
摘要

Bismuth and bismuth-based compounds have been extensively studied as anodes as prospective candidates for rechargeable magnesium batteries (rMBs). However, the unsatisfactory magnesium-storage capability caused by the typical alloying reaction mechanism severely restricts the practical option for anodes in rMBs. Herein, polyaniline intercalated Bi2O2CO3 nanosheets are prepared by an effective interlayer engineering strategy to fine-tune the layer structure of Bi2O2CO3, achieving enhanced magnesium-storage capacity, rate performance, as well as long cycle life. Excitedly, a stepwise insertion-conversion-alloying reaction is aroused to stabilize the performance, which is elucidated by in/ex situ investigations. Moreover, first-principles calculations confirm that the coupling of Bi2O2CO3 and polyaniline not only increases the conductivity induced by the strong density of states and the interior self-built-in electric field but also significantly reduces the energy barrier of Mg shuttles. Our findings shed light on exploring new electrode materials with an appropriate working mechanism toward high-performance rechargeable batteries.
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