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May 10, 2026Nanomaterials0 citationsOpen Access

Optical and Structural Properties of Co2+-Doped CsPbI3 Nanocrystals Embedded in Borosilicate Glass

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WSWilson A. SilvaUniversidade Federal do Triângulo MineiroEGEder GuimarãesInstituto Federal de Educação, Ciência e Tecnologia do Triângulo MineiroKCKlever A. S. CostaUniversidade Federal do Triângulo Mineiro

Key Points

  • This research aims to investigate the optical and structural properties of Co2+-doped CsPbI3 nanocrystals embedded in borosilicate glass.
  • Synthesize Co2+-doped CsPbI3 nanocrystals in borosilicate glass through the fusion method and thermal treatment.
  • Characterize the nanocrystals using transmission electron microscopy and X-ray diffraction for structural analysis.
  • Perform optical measurements and photoluminescence analysis for property evaluation.
  • Mean NC diameters ranged from 4.9–7.1 nm, with stable cubic α-phase observed.
  • Tunable emission shifted from deep-red to near-white light coordinates, confirming potential for LED applications.
  • Photoluminescence maintained its properties after 365 days in ambient conditions, indicating strong phase stability.

Abstract

Co2+-doped CsPbI3 nanocrystals (NCs) (CsPbI3:xCo, x = 0, 5, and 10 mol%) were synthesized in situ within a borosilicate glass matrix by the fusion method followed by controlled thermal treatment at 500 °C for 6–24 h. Transmission electron microscopy images showed quasi-spherical NCs with mean diameters of 4.9–7.1 nm. Energy-dispersive X-ray spectroscopy suggested cobalt incorporation within the nanocrystalline regions. X-ray diffraction patterns confirmed the exclusive stabilization of the cubic α-phase across all compositions, with systematic lattice contraction from a = 6.321 Å to a = 6.301 Å with increasing Co content, consistent with preferential B-site substitution of Pb2+ by Co2+. Transmittance measurements confirmed macroscopic optical transparency of all glass-NC composites after thermal treatment. The crystal field theory and Tanabe–Sugano analysis for d7 ions in tetrahedral (Td) symmetry yielded Δ = 5032 cm−1 and B = 725 cm−1 in the as-prepared state, evolving to Δ = 4428 cm−1 and B = 805 cm−1 after thermal treatment, confirming Td Co2+ coordination and significant metal–iodide covalency. CIE 1931 chromaticity analysis revealed tunable emission from deep-red coordinates to near-white-light regions, demonstrating potential for LED and single-material WLED phosphor applications. Long-term photoluminescence measurements demonstrated full preservation of α-phase excitonic emission after approximately 365 days under ambient conditions, establishing the robust phase stability of CsPbI3:xCo NCs embedded in borosilicate glass.

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Cite This Study

Silva et al. (2026) studied this question.

synapsesocial.com/papers/6a002087c8f74e3340f9b67bhttps://doi.org/10.3390/nano16100580
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