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December 4, 2025Nano-Micro Letters5 citationsOpen Access

In-Operando X-Ray Imaging for Sobering Examination of Aqueous Zinc Metal Batteries

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YDYuhang DaiHHHongzhen HeMOMengzheng Ouyang

Key Points

  • Reduced hydrogen evolution reactions were observed during zinc metal battery operation, indicating improvements in cycling stability.
  • Notably, the configuration of the battery enabled a more uniform electric field, leading to better performance.
  • In-operando X-ray imaging techniques were utilized to analyze zinc dendrite formation and related challenges during electrodeposition.
  • These findings highlight the significance of component interactions and real-world setups in boosting aqueous zinc metal battery effectiveness.

Abstract

Abstract Aqueous zinc metal batteries (AZMBs) face significant challenges in achieving reversibility and cycling stability, primarily due to hydrogen evolution reactions (HER) and zinc dendrite growth. In this study, by employing carefully designed cells that approximate the structural characteristics of practical batteries, we revisit this widely held view through in-operando X-ray radiography to examine zinc dendrite formation and HER under near-practical operating conditions. While conventional understanding emphasizes the severity of these processes, our findings suggest that zinc dendrites and HER are noticeably less pronounced in dense, real-operation configurations compared to modified cells, possibly due to a more uniform electric field and the suppression of triple-phase boundaries. This study indicates that other components, such as degradation at the cathode current collector interface and configuration mismatches within the full cell, may also represent important barriers to the practical application of AZMBs, particularly during the early stages of electrodeposition. Graphical Abstract

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Cite This Study

Dai et al. (2025) studied this question.

synapsesocial.com/papers/6930dc6bea1aef094cca209ahttps://doi.org/10.1007/s40820-025-01911-0
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