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May 6, 2026RSC AdvancesOpen Access

Redox-programmable quantum dots for high-valence and strongly redox-active ion recognition: from reactivity windows to adaptive MXene platforms

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Authors

MSMohamed Abu ShuheilOFOmar FadaamRRRoopashree R.

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Overview

This review integrates ion valence chemistry and redox modulation in MXene quantum dots, suggesting implications for sensing technology.

Key Points

  • The aim is to connect ion valence chemistry and redox behavior with the design of MXene quantum dots.
  • Reviewed thermodynamic and kinetic behaviors of high-oxidation-state ions in MXene quantum dot systems.
  • Established valence-driven reactivity windows for high-valence ions.
  • Examined redox-programmable MQD platforms for optical signal translation and multifunctional responses.
  • Identified design rules for when redox activity enhances or undermines functionality in sensing applications.
  • Demonstrated how quantum confinement reshapes redox responsiveness by localizing charge carriers.
  • Proposed a roadmap for adaptive sensing technologies targeting high-valence ion systems.

Cite This Study

Shuheil et al. (2026) studied this question.

synapsesocial.com/papers/69fada7f03f892aec9b1e46bhttps://doi.org/10.1039/d6ra01064d
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