529
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Customized structural and mechanical characteristics of Eu3+ imbued boro-telluro-dolomite glasses: effect of Dy3+ co-doping

, , , ORCID Icon, &
Article: 2178165 | Received 04 Nov 2022, Accepted 02 Feb 2023, Published online: 20 Feb 2023

References

  • Kara U, Kavaz E, Issa SA, et al. Optical, structural and nuclear radiation shielding properties of Li2B4O7 glasses: effect of boron mineral additive. Appl Phys A. 2020;126(4):1–17.
  • Kara U, Issa SA, Susoy G, et al. Synergistic effect of serpentine mineral on Li2B4O7 glasses: optical, structural and nuclear radiation shielding properties. Appl Phys A. 2020;126(3):1–19.
  • Acikgoz A, Ceyhan G, Aktas B, et al. Luminescent, structural and mechanical properties of erbium oxide doped natural obsidian glasses. Journal of Non-Crystalline Solids. 2021;572:121104.
  • Hou G, Cao L, Zhang C, et al. Improving mechanical strength of La2O3 and ZrO2 co-doped silicate glasses for touch screen. Funct Mater Lett. 2018;11(2):1850026.
  • Sani G, Limbach R, Dellith J, et al. Surface damage resistance and yielding of chemically strengthened silicate glasses: from normal indentation to scratch loading. J Am Ceram Soc. 2021;104(7):3167–3186.
  • Guo Y, Li J, Zhang Y, et al. High-entropy R2O3-Y2O3-TiO2-ZrO2-Al2O3 glasses with ultrahigh hardness. Young’s modulus, and indentation fracture toughness. Iscience. 2021;24(7):102735.
  • Lin G, Huang Y. High mechanical strength sapphire cover lens for smartphone screen. Crystal Res Technol. 2018;53(7):1800049.
  • Abdellaoui K, Ratep A, Boumaza A, et al. The effect of the natural raw barite and the dolomite material on borate glass formation. J Fundam Appl Sci. 2018;10(1):281–300.
  • Kavaz E. An experimental study on gamma ray shielding features of lithium borate glasses doped with dolomite, hematite and goethite minerals. Radiat Phys Chem. 2019;160:112–123.
  • Bulus I, Hussin R, Ghoshal SK, et al. Enhanced elastic and optical attributes of boro-telluro-dolomite glasses: role of CeO2 doping. Ceram Int. 2019;45(15):18648–18658.
  • Zakaly HM, Rashad M, Tekin HO, et al. Synthesis, optical, structural and physical properties of newly developed dolomite reinforced borate glasses for nuclear radiation shielding utilizations: an experimental and simulation study. Opt Mater. 2021;114:110942.
  • Fernandes BG, Cano NF, Rao TG, et al. Thermoluminescence and optical absorption properties of glass from natural diopside and of synthetic diopside glass. J Non Cryst Solids. 2017;456:22–26.
  • Kavaz E, Yorgun NY. Gamma ray buildup factors of lithium borate glasses doped with minerals. J Alloys Comp. 2018;752:61–67.
  • Yorgun NY. Gamma-ray shielding parameters of Li2B4O7 glasses: undoped and doped with magnetite, siderite and Zinc-Borate minerals cases. Radiochim Acta. 2019;107(8):755–765.
  • Akça-Özalp S, Portakal-Uçar ZG, Oğlakçı M, et al. Characterization of thermoluminescence kinetic parameters of dolomite after exposure to β-radiation dose. J Lumines. 2021;240:118427.
  • Teresa PE, Naseer KA, Marimuthu K, et al. Influence of modifiers on the physical, structural, elastic and radiation shielding competence of Dy3+ ions doped alkali boro-tellurite glasses. Radiat Phys Chem. 2021;189:109741.
  • Devaraja C, Gowda GJ, Eraiah B, et al. Structural, conductivity and dielectric properties of europium trioxide doped lead boro-tellurite glasses. J Alloys Comp. 2022;898:162967.
  • Mallur SB, Babu PK. Optical properties of praseodymium (Pr3+) doped bismuth boro-tellurite glasses containing CdSe nanoparticles. Mater Res Bull. 2022;147:111651.
  • Januchta K, Youngman RE, Jensen LR, et al. Mechanical property optimization of a zinc borate glass by lanthanum doping. J Non Cryst Solids. 2019;520:119461.
  • Danmalam IM, Bulus I. Correlation of optical and mechanical properties of silver nanoparticles sensitized europium doped magnesium zinc sulfophosphate glasses. Sci Proc Series. 2020;2(2):147–155.
  • Gaafar MS, Marzouk SY, Mahmoud IS, et al. Role of neodymium on some acoustic and physical properties of Bi2O3-B2O3-SrO glasses. J Mater Res Technol. 2020;9(4):7252–7261.
  • Gaikwad DK, Sayyed MI, Botewad SN, et al. Physical, structural, optical investigation and shielding featuresof tungsten bismuth tellurite based glasses. J Non Cryst Solids. 2019;503:158–168.
  • Bulus I, Dalhatu SA, Hussin R, et al. The role of dysprosium ions on the physical and optical properties of lithium-borosulfophosphate glasses. Int J Modern Phys B. 2017;31(13):1750101.
  • Elkhoshkhany N, Samir N. Structural, thermal and optical properties of oxy-fluoro borotellurite glasses. J Mater Res Technol. 2020;9(3):2946–2959.
  • El-Mallawany R, Afifi HA, El-Gazery M, et al. Effect of Bi2O3 addition on the ultrasonic properties of pentaternary borate glasses. Measurement. 2018;116:314–317.
  • Ouis MA, Taha MA, El-Bassyouni GT, et al. Thermal, mechanical and electrical properties of lithium phosphate glasses doped with copper oxide. Bull Mater Sci. 2019;42(5):1–10.
  • Saddeek YB, Aly KA, Shaaban KS, et al. Physical properties of B2O3–TeO2–Bi2O3 glass system. J Non Cryst Solids. 2018;498:82–88.
  • Szal R, Zmojda J, Kochanowicz M, et al. Spectroscopic properties of antimony modified germanate glass doped with Eu3+ ions. Ceram Int. 2019;45(18):24811–24817.
  • Singh GP, Kaur P, Kaur S, et al. Investigation of structural, physical and optical properties of CeO2–Bi2O3–B2O3 glasses. Phys B Condens Matter. 2012;407(21):4168–4172.
  • Shamshad L, Ali N, Kaewkhao J, et al. Luminescence characterization of Sm3+-doped sodium potassium borate glasses for laser application. J Alloys Comp. 2018;766:828–840.
  • Kaur A, Khanna A, Bhatt H, et al. BO and TeO speciation in bismuth tellurite and bismuth borotellurite glasses by FTIR, 11B MAS-NMR and Raman spectroscopy. J Non Cryst Solids. 2017;470:19–26.
  • Kaur A, Khanna A, Krishna PSR, et al. Structure of copper tellurite and borotellurite glasses by neutron diffraction. Raman(11B). MAS-NMR and FTIR spectroscopy. Phys Chem Glasses Eur J Glass Sci Technol Part B. 2020;61(1):27–39.
  • Rani S, Ahlawat N, Parmar R, et al. Role of lithium ions on the physical, structural and optical properties of zinc boro tellurite glasses. Indian J Phys. 2018;92(7):901–909.
  • Asyikin AS, Halimah MK, Latif AA, et al. Physical, structural and optical properties of bio-silica borotellurite glass system doped with samarium oxide nanoparticles. J Non Cryst Solids. 2020;529:119777.
  • Kaky KM, Lakshminarayana G, Baki SO, et al. Structural, thermal, and optical analysis of zinc boro-aluminosilicate glasses containing different alkali and alkaline modifier ions. J Non Cryst Solids. 2017;456:55–63.
  • Abdullahi I, Hashim S, Ghoshal SK, et al. Structures and spectroscopic characteristics of barium-sulfur-telluro-borate glasses: role of Sm3+ and Dy3+ Co-activation. Mater Chem Phys. 2020;247:122862.
  • Yadav AK, Singh P. A review of the structures of oxide glasses by Raman spectroscopy. RSC Adv. 2015;5(83):67583–67609.
  • Sailaja P, Mahamuda S, Talewar RA, et al. Spectroscopic investigations of dysprosium ions doped oxy chloro boro tellurite glasses for visible photonic device applications. J Alloys Comp. 2019;789:744–754.
  • Mohamad Azaludin NR, Sabri NS. Infrared spectroscopy of mixed glass former effect in borotellurite glasses: a review. Gading J Sci Technol. 2021;4(1):94–102.
  • Krishna VM, Mahamuda S, Talewar RA, et al. Dy3+ ions doped oxy-fluoro boro tellurite glasses for the prospective optoelectronic device applications. J Alloys Comp. 2018;762:814–826.
  • Naresh P, Kavitha B, Inamdar HK, et al. Modifier role of ZnO on the structural and transport properties of lithium boro tellurite glasses. J Non Cryst Solids. 2019;514:35–45.
  • Sangeetha G, Sekhar KC, Hameed A, et al. Influence of CaO on the structure of zinc sodium tetra borate glasses containing Cu2+ ions. J Non Cryst Solids. 2021;563:120784.
  • García-Amaya IV, Zayas ME, Alvarado-Rivera J, et al. Spectroscopic studies of the behavior of Eu on the luminescence of cadmium tellurite glasses. J Spectr. 2015;2015.
  • Pandarinath MA, Upender G, Rao KN, et al. Thermal, optical and spectroscopic studies of boro-tellurite glass system containing ZnO. J Non Crystall Solids. 2016;433:60–67.
  • Yaacob SS, Sahar MR, Mohd-Noor F, et al. The effect of Nd2O3 content on the properties and structure of Nd3+ doped TeO2–MgO–Na2O-glass. Optical Mater. 2021;111:110588.
  • Alqarni AS, Hussin R, Alamri SN, et al. Tailored structures and dielectric traits of holmium ion-doped zinc-sulpho-boro-phosphate glass ceramics. Ceram Int. 2020;46(3):3282–3291.
  • ElBatal FH, Abdelghany AM, ElDin FE, et al. Vanadium structural role in binary fluoride borate glasses and effects of gamma irradiation. Radiat Phys Chem. 2020;170:108659.
  • Thakur S, Thakur V, Kaur A, et al. Structural, optical and thermal properties of nickel doped bismuth borate glasses. J Non Cryst Solids. 2019;512(9):60–71.
  • Barlet M, Delaye JM, Charpentier T, et al. Hardness and toughness of sodium borosilicate glasses via Vickers’s indentations. J Non Cryst Solids. 2015;417:66–79.
  • Ren M, Cheng JY, Jaccani SP, et al. Composition–structure–property relationships in alkali aluminosilicate glasses: a combined experimental–computational approach towards designing functional glasses. J Non Crystall Solids. 2019;505:144–153.
  • Elokr M, AbouDeif Y. Optical, elastic properties and DTA of TNZP host tellurite glasses doped with Er3 + ions. J Mol Struct. 2016;1108:257–262.
  • Lee CS, Matori KA, Ab Aziz SH, et al. Comprehensive study on elastic moduli prediction and correlation of glass and glass ceramic derived from waste rice husk. Adv Mater Sci Eng. 2017;2017.
  • Zaitizila I, Halimah MK, Muhammad FD, et al. Influence of manganese doping on elastic and structural properties of silica borotellurite glass. J Non Cryst Solids. 2018;492:50–55.
  • Halimah MK, Umar SA, Chan KT, et al. Study of rice husk silicate effects on the elastic, physical and structural properties of borotellurite glasses. Mater Chem Phys. 2019;238:121891.
  • El-Gazery M, Ali A, El-Mallawany R. Ultrasonic and thermal properties of bismuth borotellurite glasses doped with NdCl3. Egypt J Chem. 2019;62(4):655–664.
  • Nor NM, Kamari HM, Latif AA, et al. Elastic properties of vanadium doped silica-borotellurite glasses. Solid State Phenom. 2020;307:321–326.
  • Tafida RA, Halimah MK, Muhammad FD, et al. Structural, optical and elastic properties of silver oxide incorporated zinc tellurite glass system doped with Sm3+ ions. Mater Chem Phys. 2020;246:122801.
  • Eevon C, Halimah MK, Azmi Z, et al. Elastic properties of TeO2-B2O3—ZnO-Gd2O3 glasses using non-destructive ultrasonic technique. Chalcog Lett. 2016;13(6):281–289.
  • Bergman DJ, Kantor Y. Critical properties of an elastic fractal. Phys Rev Lett. 1984;53(6):511.
  • Abd El-Moneim A, El-Mallawany R. Analysis and prediction for elastic properties of quaternary tellurite Ag2O–V2O5–MoO3–TeO2 and WO3–B2O3–MgO–TeO2 glasses. J Non Crystall Solids. 2019;522:119580.
  • Abd El-Moneim A. Oxyfluoro-zinc-tellurite glasses–part I: predicting the elastic properties and glass transition temperature under the substitution of AlF3 by ZnO. J Fluor Chem. 2019;217:97–104.
  • El-Moneim AA. An extensive study on the prediction of elastic properties in oxyfluoride tellurite AlF3–ZnO–TeO2 glasses under the substitution of TeO2 by AlF3. Phys Chem Glass Eur J Glass Sci Technol Part B. 2019;60(5):203–211.