A Reductive Environment-Assisted Dealloying Approach for Hierarchical Porous Metals in Efficient Magnesium Metal Batteries

  • Lee, Jun-Won
  • Cho, Yongjun
  • Jo, Hyeonmin
  • Ryu, Hee Seung
  • Cho, Eun Seon
  • ... Lim, Hee-Dae
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초록

This study introduces monolithic three-dimensional nanoporous magnesium (3D-NPMg) fabricated through a scalable solution-based dealloying process as electrodes. By employing a naphthalene-based reductive environment, this approach forms a hierarchically porous 3D structure with clean metallic surfaces, thereby forming a free-standing 3D bicontinuous nanostructure. The resulting 3D-NPMg addresses critical challenges in magnesium metal battery (MMB) anodes, including high polarization, dendritic growth, and limited cycling stability. Electrochemical performance tests show that 3D-NPMg exhibits lower overpotentials, improved charge-transfer kinetics, and a significantly extended cycling life. The interconnected porous structure facilitates efficient ionic transport and uniform Mg deposition, thus suppressing volume expansion and reducing top-plating during cycling. With its rapid oxidation-minimizing synthesis, this solution-based dealloying process offers broad applications across various metals, which can advance the development of stable, high-performance anodes for next-generation MMBs.

키워드

Nanoporous magnesium (3D-NPMg)Magnesium metal batteries (MMBs)Dealloying processHierarchically porous structureHigh-performance anodesMGSTORAGEINTERCALATIONBOROHYDRIDEPASSIVATIONEVOLUTIONBEHAVIOR
제목
A Reductive Environment-Assisted Dealloying Approach for Hierarchical Porous Metals in Efficient Magnesium Metal Batteries
저자
Lee, Jun-WonCho, YongjunJo, HyeonminRyu, Hee SeungCho, Eun SeonLim, Hee-Dae
DOI
10.1002/batt.202400749
발행일
2025-08
유형
Article; Early Access
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