Journal of Inorganic Materials, Volume. 34, Issue 8, 885(2019)

Structure Modeling of Genes in Glass: Composition-structure-property Approach

Li-Yan ZHANG1... Hong LI2, Li-Li HU1, and Ya-Jie WANG13 |Show fewer author(s)
Author Affiliations
  • 1Key Laboratory of Materials for High Power Laser, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201815, China
  • 2Nippon Electric Glass, Shelby, North Carolina 28150, USA
  • 3University of Chinese Academy of Sciences, Beijing 100049, China
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    Figures & Tables(11)
    Raman spectra of BL glass and SiO2 modified glasses, comparing the measured and the simulated spectra (a) along with the corresponding error in detail curve fitting results for BL glass (b), and the fitting detail of gridlines (c) in Fig.1(a)
    Effect of SiO2、B2O3 and La2O3 on Raman spectra of BL glass
    C-P and S-P Raman models of chemical stability
    Predicted and experimental results of the chemical stability for the modified BL glass based on S-P modeling
    Simulator designed special structural group distributions (Ai) in the glass to meet required properties
    Designed results of C-P model
    Linear estimated values for Tg, Stark splitting and emission cross section
    • Table 1. Number of glass samples and their properties

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      Table 1. Number of glass samples and their properties

      SampleWL/(mg•cm-2)ndn2/(×10-13, esu)α300 ℃/(×10-6, K-1)Tg/℃
      BL1.291.504661.0512.51493.1
      S10.891.505740.9912.75471.9
      S21.071.506500.9912.56471.6
      S31.301.506000.9812.62482.7
      S41.111.505540.9912.27486.1
      B10.651.507341.0012.53471.1
      B21.041.507080.9912.58472.8
      B30.671.508410.9912.48476.8
      B41.111.508141.0112.04492.2
      L10.791.508360.9912.80466.5
      L20.701.510011.0312.48476.8
      L30.651.511651.0612.60480.4
      L40.691.513321.0812.32484.4
    • Table 2. Integral area of Raman bands derived from the Raman curve fitting (A=Area)

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      Table 2. Integral area of Raman bands derived from the Raman curve fitting (A=Area)

      No.A1A2A3A4A5A6A7A8A9A10A11
      BL3.629.06.98.213.51.915.38.76.34.32.5
      S14.427.68.19.213.10.014.29.17.74.32.4
      S23.336.86.66.314.20.012.59.35.14.21.9
      S34.228.17.67.414.90.013.010.57.54.82.0
      S43.419.210.46.813.03.118.88.09.35.22.7
      B13.727.67.87.413.42.812.710.25.97.21.1
      B23.729.06.78.013.61.815.38.66.44.22.6
      B33.629.110.74.616.32.815.410.85.16.90.9
      B43.528.48.03.516.42.317.87.45.75.01.7
      L13.727.17.48.812.32.513.511.15.85.81.9
      L23.727.47.48.512.32.412.811.55.76.51.7
      L33.827.17.49.311.22.416.210.06.34.22.2
      L45.023.59.49.311.02.713.711.46.16.71.4
    • Table 3. Compositions and properties of the glass predicted by C-S-P model

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      Table 3. Compositions and properties of the glass predicted by C-S-P model

      n2/(×10-13, esu)WL/(mg•cm-2)Tg/℃CTE/(×10-6, K-1)SiO2/wt%B2O3/wt%La2O3/wt%RO*/wt%R2O*/wt%Al2O3/wt%P2O5/wt%Obj
      1.0290.90486.912.182.162.810.9113.5910.7411.5859.170.99
      1.0230.92486.712.281.932.961.0813.6110.7711.6059.270.99
      1.0270.88487.012.261.893.041.2713.5910.7411.5859.150.98
      1.0240.94488.012.212.052.970.8913.6010.7511.5959.210.98
      1.0270.90487.412.222.192.951.0813.5710.7311.5659.090.98
      1.0270.93486.012.282.032.781.2113.6210.7711.6059.300.98
    • Table 4. Properties of PS glass

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      Table 4. Properties of PS glass

      SampleYb3+ (ICP)/(×1020, ions•cm-3)σemi/pm2Tg/℃Starksplitting
      PS02.400.50477639
      PS22.380.48441651
      PS52.460.50462769
      PS102.320.53503786
      PS202.170.57509814
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    Li-Yan ZHANG, Hong LI, Li-Li HU, Ya-Jie WANG. Structure Modeling of Genes in Glass: Composition-structure-property Approach[J]. Journal of Inorganic Materials, 2019, 34(8): 885

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    Paper Information

    Category: RESEARCH PAPER

    Received: Oct. 31, 2018

    Accepted: --

    Published Online: Sep. 26, 2021

    The Author Email:

    DOI:10.15541/jim20180514

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