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Dynamic Al–O Interactions Enable Uniform Al Deposition toward High Energy-Density and Practical Al Metal Batteries AITranslate

University of Shanghai for Science and Technology; Fudan University; Fudan University; Fudan University; Fudan University
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Publisher: ACS
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Abstract AITranslate

Al batteries exhibit high crustal abundance and theoretical energy density, making them promising candidates as next-generation batteries. However, the poor Al plating/stripping at the Al anode severely limits their potential application. Herein, MXene-induced atomically dispersed MN4 sites (M = Co, Ni, Cu) containing axial O coordination (MN4O2) are demonstrated to show a synergistic effect of dynamic Al–O interactions to induce Al homogeneous deposition. As an example, the single-atomic Co modified Al anode exhibits negligible nucleation overpotential and a long plating lifespan even under unprecedented conditions (areal capacity of 10 mAh cm–2, current density of 40 mA cm–2). A practical 323 Wh kg–1 metal Al–S battery is well demonstrated under a 7 mg cm–2 high sulfur loading. These findings provide atomic-scale insights for the regulation of Al deposition and provide an avenue to stabilize the metal Al battery under practical high energy density conditions.

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DOI:https://doi.org/10.1021/acsenergylett.3c02160

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Citation Information:

Al batteries exhibit high crustal abundance and theoretical energy density, making them promising candidates as next-generation batteries. However, the poor Al plating/stripping at the Al anode severely limits their potential application. Herein, MXene-induced atomically dispersed MN4 sites (M = Co, Ni, Cu) containing axial O coordination (MN4O2) are demonstrated to show a synergistic effect of dynamic Al–O interactions to induce Al homogeneous deposition. As an example, the single-atomic Co modified Al anode exhibits negligible nucleation overpotential and a long plating lifespan even under unprecedented conditions (areal capacity of 10 mAh cm–2, current density of 40 mA cm–2). A practical 323 Wh kg–1 metal Al–S battery is well demonstrated under a 7 mg cm–2 high sulfur loading. These findings provide atomic-scale insights for the regulation of Al deposition and provide an avenue to stabilize the metal Al battery under practical high energy density conditions.

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GB/T 7714-2015 [1] Long Yao, Shunlong Ju, Guanglin Xia, et al. ACS Energy Letters, 2024(9). DOI:10.1021/acsenergylett.3c02160.
MLA [1] Long Yao, et al., ACS Energy Letters, no. 9, 2024, https://doi.org/10.1021/acsenergylett.3c02160.
APA [1] Long Yao, Shunlong Ju, Guanglin Xia, Dalin Sun, & Xuebin Yu. (2024). ACS Energy Letters(9). https://doi.org/10.1021/acsenergylett.3c02160
IEEE [1] Long Yao, Shunlong Ju, Guanglin Xia, Dalin Sun, and Xuebin Yu, ACS Energy Letters, no. 9, 2024, doi: 10.1021/acsenergylett.3c02160.