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March 4, 2026Nanobiotechnology Reports1 citations

Synthesis of Submicron Particles of the Boron-10 Isotope by Mechanical Milling in Planetary Ball Mills

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AFA. A. FronyaKFK. O. FominKPK. S. Pervakov

Key Points

  • The aim is to synthesize submicron boron-10 particles for improved applications in boron neutron capture therapy.
  • Synthesis of boron-10 particles via mechanical milling in a planetary ball mill.
  • Use of isopropanol as a solvent during the milling process.
  • Optimization of milling conditions to ensure minimal impurities and desired concentration.
  • Submicron boron-10 particles with sizes ranging from 150–600 nm were successfully synthesized.
  • Achieved optimal conditions that maintained required boron-10 concentrations.
  • Minimized the presence of impurities in the final product.

Abstract

One promising application of nuclear-physics methods in medicine is boron neutron capture therapy (BNCT). A key aspect of the effectiveness of BNCT is the production of boron-containing materials with the required concentration and the ability to keep the drug within the tumor. This work presents the results of the initial stage of boron-10 nanoparticle synthesis, which includes the synthesis of submicron particles by milling boron-10 in a planetary ball mill. Solutions of boron-10 in isopropanol with submicron particle sizes of 150–600 nm are obtained. The optimal milling conditions are determined to ensure the required boron-10 concentration and minimize the presence of impurities.

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Cite This Study

Fronya et al. (2025) studied this question.

synapsesocial.com/papers/69a7cd0bd48f933b5eed915chttps://doi.org/10.1134/s2635167625602001
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