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Magnetism and biomedical applications of single domain magnetic nanoparticles

M Sultan


Single-domain magnetic nanoparticles (SDMNP) have recently received a considerable interest, due to their important technological applications and their unique physical and chemical properties that differ from the bulk counterpart. It has great potential impacts in several medical applications such as magnetic resonance imaging (MRI) contrast enhancers, drug and gene delivery, biomedicine, biosensors, magnetic nanoparticle hyperthermia, magnetic separation, coating and ferrofluids. Most of these therapeutic and diagnostic applications require magnetic nanoparticles of size smaller than 20 nm with a narrow size distribution, form a stable suspension, be monodisperse, and biocompatible.

The main objectives of this article are to: (1) provide the physical principles and the underlying phenomena related to SDMNP such as super paramgnetism and magnetoresistance; (2) report some controllable synthesis techniques for nearly producing monodisperse suspensions and core-shell that satisfy the criteria of the medical applications; (3) explore the potential impacts of the SDMNP in several biomedical applications as mentioned above.


Отказ от ответственности: Этот реферат был переведен с помощью инструментов искусственного интеллекта и еще не прошел проверку или верификацию

Индексировано в

  • Google Scholar
  • Открыть J-ворота
  • Национальная инфраструктура знаний Китая (CNKI)
  • Космос ЕСЛИ
  • Женевский фонд медицинского образования и исследований
  • ICMJE

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