Glass Enamel & Ophtalmic Optics, Volume. 53, Issue 4, 1(2025)
Influence of Hybrid Network Modifiers on the Structure and Properties of Alkali-free Aluminosilicate Glasses
[1] [1] HIROYUKI I. FPD Glass substrates; up to now and future[J]. Asahi Garasu Kenkyu Hokoku, 2008, 57: 37-44.
[2] [2] ELLISON A, CORNEJO I A. Glass substrates for liquid crystal displays[J]. International Journal of Applied Glass Science, 2010, 1(1): 87-103.
[3] [3] MIZUKI T, MATSUDA J S, NAKAMURA Y, et al. Large domains of continuous grain silicon on glass substrate for high-performance TFTs[J]. IEEE Transactions on Electron Devices, 2004, 51(2): 204-211.
[4] [4] MAEDA K. Encyclopedia of Glass Science, Technology, History, and Culture: Screens and displays[M]. USA: The American Ceramic Society, 2021: 787-797.
[14] [14] CHEN L, DAI Y. Structure, physical properties, crystallization and sintering of iron-calcium-aluminosilicate glasses with different amounts of ZnO[J]. Journal of Non-Crystalline Solids, 2016, 452: 45-49.
[15] [15] GOSWAMI M, KOTHIYAL G P, MONTAGNE L, et al. MAS-NMR study of lithium zinc silicate glasses and glass-ceramics with various ZnO content[J]. Journal of Solid State Chemistry, 2008, 181(2): 269-275.
[16] [16] MCKEOWN D A, MULLER I S, BUECHELE A C, et al. Local environment of Zn in zirconium borosilicate glasses determined by X-ray absorption spectroscopy[J]. Journal of Non-Crystalline Solids, 2000, 261(1): 155-162.
[17] [17] PETRESCU S, CONSTANTINESCU M, ANGHEL E M, et al. Structural and physico-chemical characterization of some soda lime zinc alumino-silicate glasses[J]. Journal of Non-Crystalline Solids, 2012, 358(23): 3280-3288.
[18] [18] SMEDSKJAER M M, YOUNGMAN R E, MAURO J C. Impact of ZnO on the structure and properties of sodium aluminosilicate glasses: Comparison with alkaline earth oxides[J]. Journal of Non-Crystalline Solids, 2013, 381: 58-64.
[19] [19] SHIH Y T, JEAN J H. Mixed modifier effect in lithium-calcium borosilicate glasses[J]. Journal of the American Ceramic Society, 2017, 100(12): 5482-5489.
[20] [20] LIN Y N, KIM S H, SMITH N J, et al. Mixed modifier effect in Na2O·K2O·CaO aluminosilicate glasses: Pairwise and ternary interactions[J]. Journal of the American Ceramic Society, 2023, 106(12): 7473-7487.
[21] [21] LIU H S, OGRINC A L, LIN Y N, et al. Mixed modifier effects on structural, mechanical, chemical, and mechanochemical properties of sodium calcium aluminosilicate glass[J]. Journal of the American Ceramic Society, 2023, 106(11): 6541-6554.
[22] [22] GRIEBENOW K, BRAGATTO C B, KAMITSOS E I, et al. Mixed-modifier effect in alkaline earth metaphosphate glasses[J]. Journal of Non-Crystalline Solids, 2018, 481: 447-456.
[23] [23] YANG T Y, JIN L M, TIAN X K, et al. Mixed-alkaline earth effects on the network structure and properties of alkali-free aluminosilicate glasses[J]. Journal of Non-Crystalline Solids, 2024, 634: 122984.
[24] [24] LEE H, CARTY W. Correlation of the Vickers hardness of RO-Al2O3-SiO2 glasses with predicted liquidus temperatures[J]. International Journal of Applied Glass Science, 2023, 14(2): 268-278.
[25] [25] FISHER A J, DING H, RAJBHANDARI P, et al. Chemical structure and dissolution behaviour of CaO and ZnO containing alkali-borosilicate glass[J]. Materials Advances, 2022, 3(3): 1747-1758.
[26] [26] SALMAN S M, DARWISH H, MAHDY E A. The influence of Al2O3, MgO and ZnO on the crystallization characteristics and properties of lithium calcium silicate glasses and glass-ceramics[J]. Materials Chemistry and Physics, 2009, 112(3): 945-953.
[27] [27] SAHU P, ALI S K M, SHENOY K T, et al. Understanding the correlation of microscopic structure and macroscopic properties of multi-component glass through atomistic simulations[J]. Journal of Chemical Sciences, 2023, 135(2): 1-15.
[30] [30] LAKSHMINARAYANA G, BAKI S O, LIRA A, et al. X-ray photoelectron spectroscopy (XPS) and radiation shielding parameters investigations for zinc molybdenum borotellurite glasses containing different network modifiers[J]. Journal of Materials Science, 2017, 52(12): 7394-7414.
[31] [31] HWA L G, HSIEH K J, LIU L C. Elastic moduli of low-silica calcium alumino-silicate glasses[J]. Materials Chemistry and Physics, 2003, 78(1): 105-110.
[32] [32] YANG K, YANG B, XU X Y, et al. Prediction of the Young’s modulus of silicate glasses by topological constraint theory[J]. Journal of Non-Crystalline Solids, 2019, 514: 15-19.
[33] [33] ZAID M H M, MATORI K A, WAH L C, et al. Elastic moduli prediction and correlation in soda lime silicate glasses containing ZnO[J]. International Journal of Physical Sciences, 2011, 6(6): 1404-1410.
[37] [37] BUNDE A, INGRAM M D, MAASS P, et al. Mixed alkali effects in ionic conductors: a new model and computer simulations[J]. Journal of Non-Crystalline Solids, 1991, 131-133(part 2): 1109-1112.
[38] [38] SWANSBURY L A, MOUNTJOY G. Homogeneity of modifier ion distributions and the mixed alkaline earth effect in MgO-CaO-SiO2 silicate glasses using molecular dynamics[J]. Physics and Chemistry of Glasses: European Journal of Glass Science and Technology Part B, 2017, 58(4): 165-170.
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HUANG Yuxiang, YANG Tingyi, JIN Liangmao, CAO Zhiqiang, LI Luyao, WANG Jing, HAN Jianjun. Influence of Hybrid Network Modifiers on the Structure and Properties of Alkali-free Aluminosilicate Glasses[J]. Glass Enamel & Ophtalmic Optics, 2025, 53(4): 1
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Received: Oct. 10, 2024
Accepted: May. 29, 2025
Published Online: May. 29, 2025
The Author Email: WANG Jing (wangj@whut.edu.cn)