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February 2, 2026RSC AdvancesOpen Access

Correction: Structural engineering of MXenes for enhanced magnesium ion diffusion: a computational study

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Authors

MMMingxiao MaXYXiangyu YaoZLZhiliang Li

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Overview

Correction reveals improved magnesium ion diffusion in MXenes, suggesting new material advancements.

Key Points

  • To analyze and improve magnesium ion diffusion in MXenes through structural engineering.
  • Utilized computational modeling techniques to explore MXene structures
  • Evaluated ionic conductivity through various structural modifications
  • Applied data analysis to identify optimal configurations for magnesium diffusion
  • Identified specific structural changes that significantly enhance magnesium ion mobility
  • Demonstrated improvements in ionic conductivity metrics in engineered MXenes
  • Provided a comprehensive framework for future materials development

Cite This Study

Ma et al. (2026) studied this question.

synapsesocial.com/papers/6980fcb6c1c9540dea80e729https://doi.org/10.1039/d6ra90006b
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Recent advances in MXenes: synthesis, properties, applications, and DFT-based investigations2026
  2. 2Engineering MXene Nanomaterials: Structure–Property Relationships, Functional Design, and Emerging Technologies2026
  3. 3Engineering MXenes: Tunable Mechanical Properties and Applications in Structural Systems2026
  4. 4Unlocking a Fast Track for Magnesium Migration in Cu1.8S1–xSex via Anion-Tuning Chemistry2024 · 21 citations
  5. 5Progress in Surface and Interface Modification Strategies of MXene Materials for Energy Storage Applications2025 · 47 citations