Skip to main content
Erschienen in: Journal of Materials Science 12/2017

16.03.2017 | Original Paper

Structural, thermal and dissolution properties of MgO- and CaO-containing borophosphate glasses: effect of Fe2O3 addition

verfasst von: Chao Tan, Ifty Ahmed, Andrew J. Parsons, Nusrat Sharmin, Chenkai Zhu, Jinsong Liu, Chris D. Rudd, Xiaoling Liu

Erschienen in: Journal of Materials Science | Ausgabe 12/2017

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

This paper investigated manufacture of high-durability phosphate glass fibres for biomedical applications. Five different borophosphate glass formulations in the systems of 45P2O5–5B2O3–5Na2O–(29 − x)CaO–16MgO–(x)Fe2O3 and 45P2O5–5B2O3–5Na2O–24CaO–(21 − x)MgO–(x)Fe2O3 where x = 5, 8 and 11 mol% were produced via melt quenching. The compositions and amorphous nature of the glasses were confirmed by ICP-MS and XRD, respectively. FTIR results indicated depolymerisation of the phosphate chains with a decrease in Q 2 units with increasing Fe2O3 content. DSC analyses showed an increase in T g by ~5 °C with an increment of 3 mol% in Fe2O3 content. The thermal properties were also used to calculate processing window (i.e. T c,onsT g) and another parameter, K gl, to determine the suitability for fibre drawing directly from melt, which equals (T c,onsT g)/(T lT c,ons). The degradation study conducted in PBS solution at 37 °C showed a decrease of 25–47% in degradation rate with increasing Fe2O3 content. This confirmed that the chemical durability of the glasses had increased, which was suggested to be due to Fe2O3 addition. Furthermore, the density measured via Archimedes method revealed a linear increase with increasing Fe2O3 content.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literatur
1.
Zurück zum Zitat Parsons AJ, Ahmed I, Haque P, Fitzpatrick B, Niazi MIK, Walker GS et al (2009) Phosphate glass fibre composites for bone repair. J Bionic Eng 6:318–323CrossRef Parsons AJ, Ahmed I, Haque P, Fitzpatrick B, Niazi MIK, Walker GS et al (2009) Phosphate glass fibre composites for bone repair. J Bionic Eng 6:318–323CrossRef
2.
Zurück zum Zitat Ahmed I, Lewis M, Olsen I, Knowles JC (2004) Phosphate glasses for tissue engineering: part 1. Processing and characterisation of a ternary-based P2O5–CaO–Na2O glass system. Biomaterials 25:491–499CrossRef Ahmed I, Lewis M, Olsen I, Knowles JC (2004) Phosphate glasses for tissue engineering: part 1. Processing and characterisation of a ternary-based P2O5–CaO–Na2O glass system. Biomaterials 25:491–499CrossRef
3.
Zurück zum Zitat Ahmed I, Jones IA, Parsons AJ, Bernard J, Farmer J, Scotchford CA et al (2011) Composites for bone repair: phosphate glass fibre reinforced PLA with varying fibre architecture. J Mater Sci Mater M 22:1825–1834. doi:10.1007/s10856-011-4361-0 CrossRef Ahmed I, Jones IA, Parsons AJ, Bernard J, Farmer J, Scotchford CA et al (2011) Composites for bone repair: phosphate glass fibre reinforced PLA with varying fibre architecture. J Mater Sci Mater M 22:1825–1834. doi:10.​1007/​s10856-011-4361-0 CrossRef
4.
Zurück zum Zitat Sharmin N, Parsons AJ, Rudd CD, Ahmed I (2014) Effect of boron oxide addition on fibre drawing, mechanical properties and dissolution behaviour of phosphate-based glass fibres with fixed 40, 45 and 50 mol% P2O5. J Biomater Appl 29:639–653CrossRef Sharmin N, Parsons AJ, Rudd CD, Ahmed I (2014) Effect of boron oxide addition on fibre drawing, mechanical properties and dissolution behaviour of phosphate-based glass fibres with fixed 40, 45 and 50 mol% P2O5. J Biomater Appl 29:639–653CrossRef
5.
Zurück zum Zitat Brauer DS (2012) Phosphate glasses. In: Jones JR, Clare AG (eds) Bio-glasses: an introduction. Wiley, New Jersey Brauer DS (2012) Phosphate glasses. In: Jones JR, Clare AG (eds) Bio-glasses: an introduction. Wiley, New Jersey
6.
Zurück zum Zitat Ahmed I, Lewis M, Olsen I, Knowles JC (2004) Phosphate glasses for tissue engineering: part 2. Processing and characterisation of a ternary-based P2O5–CaO–Na2O glass fibre system. Biomaterials 25:501–507CrossRef Ahmed I, Lewis M, Olsen I, Knowles JC (2004) Phosphate glasses for tissue engineering: part 2. Processing and characterisation of a ternary-based P2O5–CaO–Na2O glass fibre system. Biomaterials 25:501–507CrossRef
7.
Zurück zum Zitat Sharmin N, Rudd CD, Parsons AJ, Ahmed I (2016) Structure, viscosity and fibre drawing properties of phosphate-based glasses: effect of boron and iron oxide addition. J Mater Sci 51:7523–7535. doi:10.1007/s10853-016-0032-3 CrossRef Sharmin N, Rudd CD, Parsons AJ, Ahmed I (2016) Structure, viscosity and fibre drawing properties of phosphate-based glasses: effect of boron and iron oxide addition. J Mater Sci 51:7523–7535. doi:10.​1007/​s10853-016-0032-3 CrossRef
8.
Zurück zum Zitat Ouis MA, Abdelghany AM, ElBatal HA (2012) Corrosion mechanism and bioactivity of borate glasses analogue to Hench’s bioglass. Process Appl Ceram 6:141–149CrossRef Ouis MA, Abdelghany AM, ElBatal HA (2012) Corrosion mechanism and bioactivity of borate glasses analogue to Hench’s bioglass. Process Appl Ceram 6:141–149CrossRef
9.
Zurück zum Zitat Fu H, Fu Q, Zhou N, Huang W, Rahaman MN, Wang D et al (2009) In vitro evaluation of borate-based bioactive glass scaffolds prepared by a polymer foam replication method. Mater Sci Eng C 29:2275–2281CrossRef Fu H, Fu Q, Zhou N, Huang W, Rahaman MN, Wang D et al (2009) In vitro evaluation of borate-based bioactive glass scaffolds prepared by a polymer foam replication method. Mater Sci Eng C 29:2275–2281CrossRef
10.
Zurück zum Zitat Albon C, Muresan D, Vandenberghe RE, Simon S (2008) Iron environment in calcium-soda-phosphate glasses and vitroceramics. J Non Cryst Solids 354:4603–4608CrossRef Albon C, Muresan D, Vandenberghe RE, Simon S (2008) Iron environment in calcium-soda-phosphate glasses and vitroceramics. J Non Cryst Solids 354:4603–4608CrossRef
11.
Zurück zum Zitat Elisa M, Iordanescu R, Sava BA, Aldica G, Kuncser V, Valsangiacom C et al (2010) Optical and structural investigations on iron-containing phosphate glasses. J Mater Sci 46:1563–1570. doi:10.1007/s10853-010-4963-9 CrossRef Elisa M, Iordanescu R, Sava BA, Aldica G, Kuncser V, Valsangiacom C et al (2010) Optical and structural investigations on iron-containing phosphate glasses. J Mater Sci 46:1563–1570. doi:10.​1007/​s10853-010-4963-9 CrossRef
12.
Zurück zum Zitat Sales BC, Boatner LA (1986) Physical and chemical characteristics of lead-iron phosphate nuclear waste glasses. J Non Cryst Solids 79:83–116CrossRef Sales BC, Boatner LA (1986) Physical and chemical characteristics of lead-iron phosphate nuclear waste glasses. J Non Cryst Solids 79:83–116CrossRef
13.
Zurück zum Zitat Yu X, Day DE, Long GJ, Brow RK (1997) Properties and structure of sodium-iron phosphate glasses. J Non Cryst Solids 215:21–31CrossRef Yu X, Day DE, Long GJ, Brow RK (1997) Properties and structure of sodium-iron phosphate glasses. J Non Cryst Solids 215:21–31CrossRef
14.
Zurück zum Zitat Stefan R, Karabulut M (2014) Structural properties of iron containing calcium-magnesium borophosphate glasses. J Mol Struct 1071:45–51CrossRef Stefan R, Karabulut M (2014) Structural properties of iron containing calcium-magnesium borophosphate glasses. J Mol Struct 1071:45–51CrossRef
15.
Zurück zum Zitat Ahmed I, Collins CA, Lewis MP, Olsen I, Knowles JC (2004) Processing, characterisation and biocompatibility of iron-phosphate glass fibres for tissue engineering. Biomaterials 25:3223–3232CrossRef Ahmed I, Collins CA, Lewis MP, Olsen I, Knowles JC (2004) Processing, characterisation and biocompatibility of iron-phosphate glass fibres for tissue engineering. Biomaterials 25:3223–3232CrossRef
16.
Zurück zum Zitat Bingham PA, Hand RJ, Forder SD, Lavaysierre A (2005) Vitrified metal finishing wastes II. Thermal and structural characterisation. J Hazard Mater 122:129–138CrossRef Bingham PA, Hand RJ, Forder SD, Lavaysierre A (2005) Vitrified metal finishing wastes II. Thermal and structural characterisation. J Hazard Mater 122:129–138CrossRef
17.
Zurück zum Zitat Ahmed I, Parsons A, Jones A, Walker G, Scotchford C, Rudd C (2010) Cytocompatibility and effect of increasing MgO content in a range of quaternary invert phosphate-based glasses. J Biomater Appl 24:555–575CrossRef Ahmed I, Parsons A, Jones A, Walker G, Scotchford C, Rudd C (2010) Cytocompatibility and effect of increasing MgO content in a range of quaternary invert phosphate-based glasses. J Biomater Appl 24:555–575CrossRef
18.
Zurück zum Zitat Franks K, Salih V, Knowles JC, Olsen I (2002) The effect of MgO on the solubility behavior and cell proliferation in a quaternary soluble phosphate based glass system. J Mater Sci Mater M 13:549–556CrossRef Franks K, Salih V, Knowles JC, Olsen I (2002) The effect of MgO on the solubility behavior and cell proliferation in a quaternary soluble phosphate based glass system. J Mater Sci Mater M 13:549–556CrossRef
19.
Zurück zum Zitat Parsons AJ, Ahmed I, Rudd CD, Cuello GJ, Pellegrini E, Richard D et al (2010) Neutron scattering and ab initio molecular dynamics study of cross-linking in biomedical phosphate glasses. J Phys Condens Matter 22:485403CrossRef Parsons AJ, Ahmed I, Rudd CD, Cuello GJ, Pellegrini E, Richard D et al (2010) Neutron scattering and ab initio molecular dynamics study of cross-linking in biomedical phosphate glasses. J Phys Condens Matter 22:485403CrossRef
20.
Zurück zum Zitat Walter G, Vogel J, Hoppea U, Hartmannc P (2001) The structure of CaO–Na2O–MgO–P2O5 invert glass. J Non Cryst Solids 296:212–223CrossRef Walter G, Vogel J, Hoppea U, Hartmannc P (2001) The structure of CaO–Na2O–MgO–P2O5 invert glass. J Non Cryst Solids 296:212–223CrossRef
21.
Zurück zum Zitat Kordes E, Vogel W, Feterowsky R (1953) Physikalisch-chemische Untersuchungen über die Eigenschaften und den Feinbau von Phosphatgläsern. Z für Elektrochem Ber der Bunsenges für Phys Chem 57:282–289 Kordes E, Vogel W, Feterowsky R (1953) Physikalisch-chemische Untersuchungen über die Eigenschaften und den Feinbau von Phosphatgläsern. Z für Elektrochem Ber der Bunsenges für Phys Chem 57:282–289
22.
Zurück zum Zitat Sahar MR, Kamaruddin N (1996) The phase equilibrium of binary MgO- and CaO-phosphate glasses. J Mater Sci Lett 15:1932–1934CrossRef Sahar MR, Kamaruddin N (1996) The phase equilibrium of binary MgO- and CaO-phosphate glasses. J Mater Sci Lett 15:1932–1934CrossRef
23.
Zurück zum Zitat Walter G, Hoppe U, Kranold R, Stachel D (1994) Structural characterisation of magnesium phosphate glasses by X-ray diffraction. Phys Chem Glasses B 35:245–252 Walter G, Hoppe U, Kranold R, Stachel D (1994) Structural characterisation of magnesium phosphate glasses by X-ray diffraction. Phys Chem Glasses B 35:245–252
24.
Zurück zum Zitat Shaharuddin SIS, Ahmed I, Furniss D, Parsons AJ, Rudd CD (2012) Thermal properties, viscosities and densities of (50 − x)Na2O–(x)CaO–50P2O5 glasses. Glass Technol Part A 53:245–251 Shaharuddin SIS, Ahmed I, Furniss D, Parsons AJ, Rudd CD (2012) Thermal properties, viscosities and densities of (50 − x)Na2O–(x)CaO–50P2O5 glasses. Glass Technol Part A 53:245–251
25.
Zurück zum Zitat Mazurin OV (2007) Problems of compatibility of the values of glass transition temperatures published in the world literature. Glass Phys Chem 33:22–36CrossRef Mazurin OV (2007) Problems of compatibility of the values of glass transition temperatures published in the world literature. Glass Phys Chem 33:22–36CrossRef
26.
Zurück zum Zitat Sharmin N, Hasan MS, Parsons AJ, Furniss D, Scotchford CA, Ahmed I et al (2013) Effect of boron addition on the thermal, degradation, and cytocompatibility properties of phosphate-based glasses. Biomed Res Int 2013:902427CrossRef Sharmin N, Hasan MS, Parsons AJ, Furniss D, Scotchford CA, Ahmed I et al (2013) Effect of boron addition on the thermal, degradation, and cytocompatibility properties of phosphate-based glasses. Biomed Res Int 2013:902427CrossRef
27.
Zurück zum Zitat Seddon AB, Tikhomirov VK, Rowe H, Furniss D (2007) Temperature dependence of viscosity of Er3+-doped oxyfluoride glasses and nano-glass-ceramics. J Mater Sci Mater El 18:145–151CrossRef Seddon AB, Tikhomirov VK, Rowe H, Furniss D (2007) Temperature dependence of viscosity of Er3+-doped oxyfluoride glasses and nano-glass-ceramics. J Mater Sci Mater El 18:145–151CrossRef
28.
Zurück zum Zitat Shelby JE (2005) Principles of glass formation. In: Shelby JE (ed) Introduction to glass science and technology, 2nd edn. The Royal Society of Chemistry, Cambridge, pp 7–25CrossRef Shelby JE (2005) Principles of glass formation. In: Shelby JE (ed) Introduction to glass science and technology, 2nd edn. The Royal Society of Chemistry, Cambridge, pp 7–25CrossRef
29.
Zurück zum Zitat Inoue A (1998) Amorphous, nanoquasicrystalline and nanocrystalline alloys in Al-based systems. Prog Mater Sci 43:365–520CrossRef Inoue A (1998) Amorphous, nanoquasicrystalline and nanocrystalline alloys in Al-based systems. Prog Mater Sci 43:365–520CrossRef
30.
Zurück zum Zitat Nascimento MLF, Souza LA, Ferreira EB, Zanotto ED (2005) Can glass stability parameters infer glass forming ability? J Non Cryst Solids 351:3296–3308CrossRef Nascimento MLF, Souza LA, Ferreira EB, Zanotto ED (2005) Can glass stability parameters infer glass forming ability? J Non Cryst Solids 351:3296–3308CrossRef
31.
Zurück zum Zitat Hruby A (1972) Evaluation of glass-forming tendency by means of DTA. Czech J Phys B 22:1187–1193CrossRef Hruby A (1972) Evaluation of glass-forming tendency by means of DTA. Czech J Phys B 22:1187–1193CrossRef
32.
Zurück zum Zitat Arstila H, Vedel E, Hupa L, Hupa M (2007) Factors affecting crystallization of bioactive glasses. J Eur Ceram Soc 27:1543–1546CrossRef Arstila H, Vedel E, Hupa L, Hupa M (2007) Factors affecting crystallization of bioactive glasses. J Eur Ceram Soc 27:1543–1546CrossRef
33.
Zurück zum Zitat Salman SM, Salama SN, Mahdy EA (2015) The effect of strontium oxide replacing calcium oxide on the crystallization and thermal expansion properties of Li2O–CaO–SiO2 glasses. Ceram Int 41:137–143CrossRef Salman SM, Salama SN, Mahdy EA (2015) The effect of strontium oxide replacing calcium oxide on the crystallization and thermal expansion properties of Li2O–CaO–SiO2 glasses. Ceram Int 41:137–143CrossRef
34.
Zurück zum Zitat Bergo P, Reis ST, Pontuschka WM, Prison JM, Motta CC (2004) Dielectric properties and structural features of barium-iron phosphate glasses. J Non Cryst Solids 336:159–164CrossRef Bergo P, Reis ST, Pontuschka WM, Prison JM, Motta CC (2004) Dielectric properties and structural features of barium-iron phosphate glasses. J Non Cryst Solids 336:159–164CrossRef
35.
Zurück zum Zitat Haque P, Ahmed I, Parsons A, Felfel R, Walker G, Rudd C (2013) Degradation properties and microstructural analysis of 40P2O5–24 MgO–16CaO–16Na2O–4Fe2O3 phosphate glass fibres. J Non Cryst Solids 375:99–109CrossRef Haque P, Ahmed I, Parsons A, Felfel R, Walker G, Rudd C (2013) Degradation properties and microstructural analysis of 40P2O5–24 MgO–16CaO–16Na2O–4Fe2O3 phosphate glass fibres. J Non Cryst Solids 375:99–109CrossRef
36.
Zurück zum Zitat Muresan D, Bathory D, Keul M, Balasz I, Simon S (2005) Local structure and biological effects of vitreous calcium–sodium–phosphate system containing iron. J Optoelectron Adv M 7:2835–2838 Muresan D, Bathory D, Keul M, Balasz I, Simon S (2005) Local structure and biological effects of vitreous calcium–sodium–phosphate system containing iron. J Optoelectron Adv M 7:2835–2838
37.
Zurück zum Zitat Lu M, Wang F, Liao Q, Chen K, Qin J, Pan S (2015) FTIR spectra and thermal properties of TiO2-doped iron phosphate glasses. J Mol Struct 1081:187–192CrossRef Lu M, Wang F, Liao Q, Chen K, Qin J, Pan S (2015) FTIR spectra and thermal properties of TiO2-doped iron phosphate glasses. J Mol Struct 1081:187–192CrossRef
38.
Zurück zum Zitat Qian B, Yang S, Liang X, Lai Y, Gao L, Yin G (2012) Structural and thermal properties of La2O3–Fe2O3–P2O5 glasses. J Mol Struct 1011:153–157CrossRef Qian B, Yang S, Liang X, Lai Y, Gao L, Yin G (2012) Structural and thermal properties of La2O3–Fe2O3–P2O5 glasses. J Mol Struct 1011:153–157CrossRef
39.
Zurück zum Zitat Magdas DA, Cozar O, Chis V, Ardelean I, Vedeanu N (2008) The structural dual role of Fe2O3 in some lead-phosphate glasses. Vib Spectrosc 48:251–254CrossRef Magdas DA, Cozar O, Chis V, Ardelean I, Vedeanu N (2008) The structural dual role of Fe2O3 in some lead-phosphate glasses. Vib Spectrosc 48:251–254CrossRef
40.
Zurück zum Zitat Bruni S, Cariati F, Narducci D (1994) Infrared specular reflection spectra of copper–zinc phosphate glasses. Vib Spectrosc 7:169–173CrossRef Bruni S, Cariati F, Narducci D (1994) Infrared specular reflection spectra of copper–zinc phosphate glasses. Vib Spectrosc 7:169–173CrossRef
41.
Zurück zum Zitat Sharmin N, Hasan MS, Rudd CD, Boyd D, Werner-Zwanziger U, Ahmed I et al (2016) Effect of boron oxide addition on the viscosity-temperature behaviour and structure of phosphate-based glasses. J Biomed Mater Res B Sharmin N, Hasan MS, Rudd CD, Boyd D, Werner-Zwanziger U, Ahmed I et al (2016) Effect of boron oxide addition on the viscosity-temperature behaviour and structure of phosphate-based glasses. J Biomed Mater Res B
42.
Zurück zum Zitat Ciceo-Lucacel R, Radu T, Ponta O, Simon V (2014) Novel selenium containing boro-phosphate glasses: preparation and structural study. Mater Sci Eng C 39:61–66CrossRef Ciceo-Lucacel R, Radu T, Ponta O, Simon V (2014) Novel selenium containing boro-phosphate glasses: preparation and structural study. Mater Sci Eng C 39:61–66CrossRef
43.
Zurück zum Zitat Wazer V, John R (1958) Phosphorus and its compounds. Interscience Publishers, New York Wazer V, John R (1958) Phosphorus and its compounds. Interscience Publishers, New York
44.
Zurück zum Zitat Knowles JC (2003) Phosphate based glasses for biomedical applications. J Mater Chem 13:2395CrossRef Knowles JC (2003) Phosphate based glasses for biomedical applications. J Mater Chem 13:2395CrossRef
45.
Zurück zum Zitat Koudelka L, Mošner P (2001) Study of the structure and properties of Pb–Zn borophosphate glasses. J Non Cryst Solids 293–295:635–641CrossRef Koudelka L, Mošner P (2001) Study of the structure and properties of Pb–Zn borophosphate glasses. J Non Cryst Solids 293–295:635–641CrossRef
46.
Zurück zum Zitat Carta D, Pickup DM, Knowles JC, Ahmed I, Smith ME, Newport RJ (2007) A structural study of sol–gel and melt-quenched phosphate-based glasses. J Non Cryst Solids 353:1759–1765CrossRef Carta D, Pickup DM, Knowles JC, Ahmed I, Smith ME, Newport RJ (2007) A structural study of sol–gel and melt-quenched phosphate-based glasses. J Non Cryst Solids 353:1759–1765CrossRef
47.
Zurück zum Zitat Kim N-J, Im S-H, Kim D-H, Yoon D-K, Ryu B-K (2010) Structure and properties of borophosphate glasses. Electron Mater Lett 6:103–106CrossRef Kim N-J, Im S-H, Kim D-H, Yoon D-K, Ryu B-K (2010) Structure and properties of borophosphate glasses. Electron Mater Lett 6:103–106CrossRef
48.
Zurück zum Zitat Elisa M, Sava BA, Diaconu A, Boroica L, Ursu D, Stamatin I et al (2010) Thermal properties of ecological phosphate and silicate glasses. Glass Phys Chem+ 35:596–601CrossRef Elisa M, Sava BA, Diaconu A, Boroica L, Ursu D, Stamatin I et al (2010) Thermal properties of ecological phosphate and silicate glasses. Glass Phys Chem+ 35:596–601CrossRef
49.
Zurück zum Zitat Okura T, Miyachi T, Monma H (2006) Properties and vibrational spectra of magnesium phosphate glasses for nuclear waste immobilization. J Eur Ceram Soc 26:831–836CrossRef Okura T, Miyachi T, Monma H (2006) Properties and vibrational spectra of magnesium phosphate glasses for nuclear waste immobilization. J Eur Ceram Soc 26:831–836CrossRef
50.
Zurück zum Zitat Singh DN (2009) Periodic table and periodicity of properties. In: Singh DN (ed) Basic concept of inorganic chemistry. Pearson Education, India, pp 1–32 Singh DN (2009) Periodic table and periodicity of properties. In: Singh DN (ed) Basic concept of inorganic chemistry. Pearson Education, India, pp 1–32
51.
Zurück zum Zitat Massera J, Claireaux C, Lehtonen T, Tuominen J, Hupa L, Hupa M (2011) Control of the thermal properties of slow bioresorbable glasses by boron addition. J Non Cryst Solids 357:3623–3630CrossRef Massera J, Claireaux C, Lehtonen T, Tuominen J, Hupa L, Hupa M (2011) Control of the thermal properties of slow bioresorbable glasses by boron addition. J Non Cryst Solids 357:3623–3630CrossRef
52.
Zurück zum Zitat Shih PY, Yung SW, Chin TS (1998) Thermal and corrosion behavior of P2O5–Na2O–CuO glasses. J Non Cryst Solids 224:143–152CrossRef Shih PY, Yung SW, Chin TS (1998) Thermal and corrosion behavior of P2O5–Na2O–CuO glasses. J Non Cryst Solids 224:143–152CrossRef
53.
Zurück zum Zitat Shih PY, Chin TS (2001) Preparation of lead-free phosphate glasses with low T g and excellent chemical durability. J Mater Sci Lett 20:1811–1813CrossRef Shih PY, Chin TS (2001) Preparation of lead-free phosphate glasses with low T g and excellent chemical durability. J Mater Sci Lett 20:1811–1813CrossRef
54.
Zurück zum Zitat Isozaki K, Hosono H, Kokumai H, Kawazoe H, Kanazawa T, Gohshi Y (1981) Co-ordination of Mg2+ in MgO–P2O5 glasses. J Mater Sci 16:2318–2319CrossRef Isozaki K, Hosono H, Kokumai H, Kawazoe H, Kanazawa T, Gohshi Y (1981) Co-ordination of Mg2+ in MgO–P2O5 glasses. J Mater Sci 16:2318–2319CrossRef
55.
Zurück zum Zitat McMillan PW (1979) Glass-ceramics. Academic Press, London McMillan PW (1979) Glass-ceramics. Academic Press, London
56.
Zurück zum Zitat Chanshetti UB, Shelke VA, Jadhav SM, Shankarwar SG, Chondhekar TK, Shankarwar AG et al (2011) Density and molar volume studies of phosphate glasses. Facta Univ Ser Phys Chem Technol 9:29–36CrossRef Chanshetti UB, Shelke VA, Jadhav SM, Shankarwar SG, Chondhekar TK, Shankarwar AG et al (2011) Density and molar volume studies of phosphate glasses. Facta Univ Ser Phys Chem Technol 9:29–36CrossRef
57.
Zurück zum Zitat Hasan MS, Ahmed I, Parsons AJ, Walker GS, Scotchford CA (2012) Material characterisation and cytocompatibility assessment of quinternary phosphate glasses. J Mater Sci Mater M 23:2531–2541CrossRef Hasan MS, Ahmed I, Parsons AJ, Walker GS, Scotchford CA (2012) Material characterisation and cytocompatibility assessment of quinternary phosphate glasses. J Mater Sci Mater M 23:2531–2541CrossRef
Metadaten
Titel
Structural, thermal and dissolution properties of MgO- and CaO-containing borophosphate glasses: effect of Fe2O3 addition
verfasst von
Chao Tan
Ifty Ahmed
Andrew J. Parsons
Nusrat Sharmin
Chenkai Zhu
Jinsong Liu
Chris D. Rudd
Xiaoling Liu
Publikationsdatum
16.03.2017
Verlag
Springer US
Erschienen in
Journal of Materials Science / Ausgabe 12/2017
Print ISSN: 0022-2461
Elektronische ISSN: 1573-4803
DOI
https://doi.org/10.1007/s10853-017-0981-1

Weitere Artikel der Ausgabe 12/2017

Journal of Materials Science 12/2017 Zur Ausgabe

    Marktübersichten

    Die im Laufe eines Jahres in der „adhäsion“ veröffentlichten Marktübersichten helfen Anwendern verschiedenster Branchen, sich einen gezielten Überblick über Lieferantenangebote zu verschaffen.