Ga 2 O 3 Quantum Dots with N-Doped Amorphous Carbon Fixed for Efficient Storage and Transfer of Lithium Ions by Introduction of Dopamine Hydrochloride

The Ga O anode has great potential due to its self-healing and high theoretical capacity in lithium-ion batteries. Like anodes with other transition metal oxides, the Ga O anode has the problems of structural change and low electrical conductivity. The electrochemical performance of the Ga O anode s...

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Veröffentlicht in:Langmuir 2023-03, Vol.39 (10), p.3628-3636
Hauptverfasser: Wang, Yuyang, Xiong, Zhisong, Zhao, Ying, Zhang, Zhiqiang, Qiu, Guanyu, Liang, Zhifu, Mei, Chen, Hou, Shuang, Li, Shuti, Gao, Fangliang, Zhao, Lingzhi
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container_issue 10
container_start_page 3628
container_title Langmuir
container_volume 39
creator Wang, Yuyang
Xiong, Zhisong
Zhao, Ying
Zhang, Zhiqiang
Qiu, Guanyu
Liang, Zhifu
Mei, Chen
Hou, Shuang
Li, Shuti
Gao, Fangliang
Zhao, Lingzhi
description The Ga O anode has great potential due to its self-healing and high theoretical capacity in lithium-ion batteries. Like anodes with other transition metal oxides, the Ga O anode has the problems of structural change and low electrical conductivity. The electrochemical performance of the Ga O anode still needs to be improved. In this work, we synthesized a Ga O quantum dots@N-doped carbon (Ga O -QD@NC) composite by hydrothermal reaction with a carbon source of dopamine hydrochloride, in which Ga O quantum dots were dispersed in the interior of the amorphous carbon. Such a special structure is conducive to the high-speed migration of lithium ions and electrons and effectively inhibits volume expansion and agglomeration. Smaller and more uniform quantum dots facilitate efficient repair of the structure. Due to these advantages, the Ga O -QD@NC electrode has great electrochemical performance. The Ga O -QD@NC electrode has an initial discharge capacity of 1580 mAh g with a high first Coulombic efficiency of 62.8% and a cycling capacity of 953 mAh g under 0.1 A g . It even has a capacity of 460 mAh g at 1 A g after 300 cycles. This strategy can provide a new direction for the Ga O anode in lithium-ion batteries with high capacity.
doi_str_mv 10.1021/acs.langmuir.2c03166
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title Ga 2 O 3 Quantum Dots with N-Doped Amorphous Carbon Fixed for Efficient Storage and Transfer of Lithium Ions by Introduction of Dopamine Hydrochloride
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