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Phosphotellurite glass and glass-ceramics with high TeO <sub/>2</sub> content: thermal, structural and optical properties

DOI:10.1039/c9dt00691e 期刊:Dalton Transactions 出版年份:2019 更新时间:2025-11-14 17:03:37
摘要: Phosphotellurite based glasses have interesting features such as low characteristic temperatures, large glass forming ability, high thermal stability against crystallization and broad transparency window from ultraviolet (UV) to near-infrared (NIR), which makes them promising materials for photonic applications. In this work, phosphotellurite binary glasses, having composition (100 – x) TeO2–x Ba(PO3)2 with x varying from 1 to 20 mol %, were synthesized by the conventional melt-quenching method in covered gold crucibles under air. Optical, physical and structural properties of the new glass samples were investigated by differential scanning calorimetry, X-rays diffraction, Raman spectroscopy, transmission electron microscopy, linear optical absorption from UV to NIR, IR transmittance, and optical limiting experiments. Transparent glass-ceramics in the visible range were obtained for phosphotellurite samples containing 2, 4 and 6 mol % of Ba(PO3)2 and the phase crystallization was investigated through Rietveld analysis and transmission electron microscopy. The incorporation of Ba(PO3)2 into the TeO2 network drastically increases the thermal stability against devitrification and helps to shift the infrared multiphonon absorption edge to longer wavelengths. Nonlinear measurements performed with a picosecond laser at 532 nm indicate large effective nonlinear absorption coefficients for all samples. In summary, the dependence of the spectroscopic properties on the samples’ compositions revealed a promising transparent glass and glass-ceramics for photonic applications.
作者: Danilo Manzani,Jo?o B. Souza Junior,Albert S. Reyna,Manoel L. Silva Neto,Jessica E. Q. Bautista,Sidney J. L. Ribeiro,Cid B. de Araújo
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To synthesize and characterize phosphotellurite binary glasses and glass-ceramics in the TeO2–Ba(PO3)2 system, investigating their thermal, structural, and optical properties for photonic applications.

The study successfully synthesized stable phosphotellurite glasses and glass-ceramics in the TeO2–Ba(PO3)2 system, with samples containing 2-6 mol% Ba(PO3)2 forming transparent glass-ceramics without heat treatment. Incorporation of Ba(PO3)2 increased thermal stability, making samples suitable for optical fiber fabrication. Crystallization of α-TeO2 and γ-TeO2 phases was identified, and nonlinear optical experiments showed large effective nonlinear extinction coefficients, particularly in high-TeO2 samples. The materials are promising for photonic applications such as Raman amplifiers, nonlinear waveguides, and optical limiters.

The strong OH absorption band in the infrared region limits transparency beyond 3 μm, which could be improved by melting in dry-atmosphere. Samples with low Ba(PO3)2 content (TBP1 and TBP2) easily crystallize and were not obtained in bulk form. Optical damage occurred at high laser intensities (>10 GW/cm2) during nonlinear measurements. The study focuses on binary systems, and further optimization for specific applications may be needed.

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