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Luminescent nanodiamonds for biomedical applications.

Jana M Say1,2, Caryn van Vreden3, David J Reilly4

  • 1ARC Centre of Excellence for Engineered Quantum Systems, Department of Physics and Astronomy, Macquarie University, Sydney, NSW, 2109, Australia.

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Summary

Nanodiamonds, once industrial materials, are now key for biomedical and quantum tech due to their biocompatibility and optical stability. Their unique properties enable advanced applications in cell tracking, drug delivery, and molecular detection.

Keywords:
BiofunctionalisationDrug deliveryFluorescenceImagingNanodiamondNitrogen-vacancy centre

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Area of Science:

  • Materials Science
  • Biotechnology
  • Quantum Science

Background:

  • Nanodiamonds are transitioning from industrial uses to advanced technological applications.
  • Key properties include low cost, biocompatibility, ease of functionalization, and optical stability.
  • These characteristics make them suitable for sophisticated biomedical and quantum science applications.

Purpose of the Study:

  • To explore the processing methods and challenges associated with nanodiamond materials.
  • To review detection schemes for nanodiamonds in various applications.
  • To highlight leading current and potential applications of nanodiamonds.

Main Methods:

  • Review of nanodiamond processing techniques.
  • Analysis of detection methodologies for nanodiamonds.
  • Survey of current research in nanodiamond applications.

Main Results:

  • Nanodiamonds offer a versatile platform for biomedical applications like intracellular tracking and drug delivery.
  • Their optical stability and biocompatibility are crucial for sensitive molecular detection.
  • Quantum applications are emerging, leveraging unique nanodiamond properties.

Conclusions:

  • Nanodiamonds possess a unique combination of properties ideal for advanced scientific fields.
  • Further development in processing and detection will unlock broader applications.
  • Nanodiamonds are poised to become significant tools in biomedical and quantum research.