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May 6, 2026RSC Advances0 citationsOpen Access

Chemically Driven Design of N-Doped MXene Quantum Dots for Sensing Platforms

Chemically driven design of N-doped MXene quantum dots for portable sensing and smartphone-integrated platforms

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Authors

GAGhada Al-AssiAAAbbas Hashim AbdulsalamRRR. Roopashree

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Overview

Review highlights design principles for Nitrogen-doped MXene quantum dots in portable sensing applications, suggesting stability enhancements.

Key Points

  • This review aims to explore the design strategies of N-doped MXene quantum dots (N-MQDs) for improved sensing applications.
  • Discussed chemical design principles of N-MQDs focusing on nitrogen incorporation and defect engineering.
  • Examined strategies for anchoring and integrating N-MQDs into portable platforms.
  • Summarized examples of different sensing architectures including fluorescence and electrochemical sensing.
  • N-MQDs exhibit tunable surface chemistry enhancing their functional behavior for miniaturized sensors.
  • Integration strategies lead to stable performance in smartphone-assisted diagnostics.
  • Dual-mode sensing architectures increase adaptability across various applications.

Cite This Study

Al-Assi et al. (2026) studied this question.

synapsesocial.com/papers/69fada7f03f892aec9b1e4f4https://doi.org/10.1039/d6ra00830e
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