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March 28, 2026Ceramics International0 citationsOpen Access

Influence of phosphate precursors on the incorporation of phosphorus and dopants into mesoporous bioactive glasses prepared by self-assembly induced evaporation

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HKHana KaňkováKFKatarína FaturíkováLBLenka Buňová

Key Points

  • The main aim is to optimize phosphorus incorporation in mesoporous bioactive glasses using modified synthesis conditions.
  • Utilized evaporation-induced self-assembly for synthesizing mesoporous bioactive glass nanoparticles.
  • Replaced triethyl phosphate with diethyl phosphate to enhance phosphorus efficiency.
  • Studied the incorporation of copper-magnesium and copper-strontium dopants.
  • Achieved higher phosphorus content than targeted compositions.
  • Successfully incorporated Cu–Mg and Cu–Sr dopants without disrupting pore structures.
  • Highlighted the importance of precursor selection for achieving desired compositional control.

Abstract

Evaporation-Induced Self-Assembly (EISA) is a widely used method for synthesizing mesoporous bioactive glass nanoparticles (MBGNPs) with uniform pore structures and in vitro bioactivity suitable for bone regeneration. Although EISA enables the preparation of phosphorus-containing MBGNPs (e.g., 80SiO 2 –15CaO–5P 2 O 5 ), the actual phosphorus content is often lower than the targeted composition due to limited precursor hydrolysis. This paper reports an optimized EISA approach to achieve controlled P 2 O 5 incorporation by modifying synthesis conditions and replacing triethyl phosphate (TEP) with diethyl phosphate (DEP). The use of DEP significantly enhances phosphorus incorporation efficiency and allows the successful incorporation of Cu–Mg and Cu–Sr dopants without disrupting the mesoporous structure. These findings highlight that appropriate precursor selection and process optimization are crucial for precise compositional control in doped mesoporous bioactive glasses synthesized via EISA.

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Cite This Study

Kaňková et al. (2026) studied this question.

synapsesocial.com/papers/69c770418bbfbc51511e0847https://doi.org/10.1016/j.ceramint.2026.03.361
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