2016
DOI: 10.1021/acs.jpcc.6b01720
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Mechanical–Structural Investigation of Ion-Exchanged Lithium Silicate Glass using Micro-Raman Spectroscopy

Abstract: Micro-Raman spectroscopy was used to determine the structural modifications occurring in a simple ion-exchanged glass. The base lithium silicate composition 30Li2O–70SiO2 was studied as it underwent ion exchange, Li+ ↔ K+, at six temperatures spanning the glass transition point. Using a well-developed relationship between the Si–O–Si bond angle, the Si–O bond length, and Raman shifts, the reduction in network molar volume and increase in compressive stress were estimated. On the basis of the effect of the ion-… Show more

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Cited by 48 publications
(30 citation statements)
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“…The chemical strengthening properties of glasses are typically characterized by CS and depth of ion-exchange layer (DOL). Moreover, these properties depend much on glass composition and topological restriction (Smedskjaer et al, 2010;Vargheese et al, 2014;Calahoo et al, 2016). Chemically strengthened aluminosilicate glasses through K + -Na + ion exchange are currently receiving significant interest due to their excellent mechanical properties (Chang et al, 2014).…”
Section: Introductionmentioning
confidence: 99%
“…The chemical strengthening properties of glasses are typically characterized by CS and depth of ion-exchange layer (DOL). Moreover, these properties depend much on glass composition and topological restriction (Smedskjaer et al, 2010;Vargheese et al, 2014;Calahoo et al, 2016). Chemically strengthened aluminosilicate glasses through K + -Na + ion exchange are currently receiving significant interest due to their excellent mechanical properties (Chang et al, 2014).…”
Section: Introductionmentioning
confidence: 99%
“…This behavior has been also reported in the Li(K) 2 OSiO 2 system. 8) For the non-strengthened glass, on the other hand, the position seems invariant in a range of z = 0135¯m. increases and [Na+K] seems invariant with respect to z, which suggests the NaK ion exchange has been achieved and this behavior is consistent with the previously reported.…”
Section: ¹1mentioning
confidence: 97%
“…In the ion-exchanged layer, the TO 2 network is compressed due to the ion exchange of Na for the larger ion, K, which results in the compressive stress. 1)3), 8) As for the simple binary silicate glass, Li(K) 2 OSiO 2 , relation between the compressive stress and shifts and fractions of the Raman peaks on the Q n structures in the compressed SiO 2 network has been discussed on the basis of changes in bond angles of SiOSi and bond lengths of SiO. 8) However, that discussion seems difficult to apply to the present work since the present chemically-strengthened glass has more complex composition and structure, particularly Q n structures that comprise the SiO 4 and AlO 4 tetrahedra.…”
Section: ¹1mentioning
confidence: 99%
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