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February 25, 2026International Journal of Applied Glass Science0 citationsOpen Access

High‐Refractive‐Index La 2 O 3 –Nb 2 O 5 –WO 3 Ternary Glasses Prepared Using a Levitation Technique

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XCXu ChengzhongHIHiroyuki InoueYYYutaka Yanaba

Key Points

  • The aim is to synthesize La2O3-Nb2O5-WO3 glasses using a levitation technique and evaluate their optical properties.
  • Synthesis of La2O3-Nb2O5-WO3 glasses using levitation technique.
  • Assessment of optical properties, including refractive index and transmittance.
  • Investigation of effects of WO3 content on glass transition temperature and wavelength dispersion.
  • LNW glasses exhibited a high refractive index greater than 2.1 and transmittance of 70%-75% at around 800 µm thickness.
  • Glass transition temperature decreased to 550°C with increased WO3 content.
  • Lower wavelength dispersion of refractive index was observed with increasing WO3 substitution.

Abstract

ABSTRACT Colorless and transparent La 2 O 3 –Nb 2 O 5 –WO 3 (LNW) glasses were successfully synthesized using a levitation technique in a wide glass‐forming region. These glasses exhibited excellent optical properties, including a high refractive index (>2.1) with low wavelength dispersion, and high transmittance (70%‒75% at a thickness of ∼800 µm) in the ultraviolet–visible region. The glass transition temperature decreased with increasing WO 3 content, reaching as low as 550°C, which enables easier pressing and molding compared to other levitation‐synthesized high‐refractive‐index glasses, such as Nb 2 O 5 ‐based and TiO 2 ‐based glasses. The dependence of the packing density and the electronic polarizability of the oxide ion on the Nb 2 O 5 content suggested that the effect of substituting Nb 2 O 5 with WO 3 substantially differs between La 2 O 3 ‐rich and Nb 2 O 5 ‐rich La 2 O 3 –Nb 2 O 5 binary glasses. The inherent absorption wavelength decreased with increasing WO 3 content, resulting in a lower wavelength dispersion of the refractive index. These findings indicate that LNW glasses are promising optical materials for advanced applications requiring high refractive index and low processing temperature.

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Cite This Study

Chengzhong et al. (2026) studied this question.

synapsesocial.com/papers/699e91d7f5123be5ed04faf5https://doi.org/10.1111/ijag.70027
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