Abstract:Single crystals of yttria‐stabilized zirconia (YSZ) doped with various concentrations of Sm2O3 were synthesized by the optical floating zone method, and their structure and spectroscopic properties characterized using powder X‐ray diffraction (XRD), optical absorption, and luminescence measurements. XRD showed that the cubic phase of ZrO2 was stabilized by addition of Y2O3 and a series of absorption peaks characteristic of Sm3+ was detected by UV‐visible absorption spectroscopy. Three phenomenological J‐O osci… Show more
“…It is accepted that the values of Ω 4 and Ω 6 reflect the stiffness of the single crystals, and χ = Ω 4 / Ω 6 represents a quality factor that is important for characterizing the spectral properties of the (ZrO 2 ) 92 (Y 2 O 3 ) 8- x (Nd 2 O 3 ) x single crystals. 27 In this study, the value of 1.87 for χ is greater than that for Nd 3+ in most other matrices (Table 3), and indicates that (ZrO 2 ) 92 (Y 2 O 3 ) 8 is a potentially valuable matrix material for up-conversion luminescence and near-infrared lasers.…”
Section: Judd–ofelt Analysismentioning
confidence: 55%
“…In this study Ω 4 > Ω 2 > Ω 6 . It is accepted that the 27 In this study, the value of 1.87 for χ is greater than that for Nd 3+ in most other matrices (Table 3), and indicates that (ZrO 2 ) 92 (Y 2 O 3 ) 8 is a potentially valuable matrix material for up-conversion luminescence and near-infrared lasers.…”
Section: Judd-ofelt Analysismentioning
confidence: 58%
“…37 The three emission peaks corresponding to the transitions 4 In most previous studies of rare earth doped YSZ, variation of the number of oxygen vacancies with rare earth doping in YSZ samples where the Y : Zr ratio was kept constant will have induced additional structural distortions from an increased number of oxygen vacancies at high rare earth levels. 27,38 This problem of variation in the number of oxygen vacancies with Nd 3+ content was excluded from the present work by holding the Zr content constant (see Table 1), and the asymmetry at the Nd 3+ site is probably related to local distortions in the (ZrO 2 ) 92 (Y 2 O 3 ) 8−x (Nd 2 O 3 ) x crystal structure caused by the differences in size of the Nd 3+ and Y 3+ ions. It is assumed that the Nd 3+ replaces some of the Y 3+ in the crystal structure because of charge and size similarities, and evidence from section 3.2 shows that the positions of the absorption peaks are independent of Nd 3+ concentration, and thus Nd 3+ substitution does not have a significant effect on the crystal structure.…”
Section: Up-conversion Photoluminescence and Mechanismmentioning
confidence: 99%
“…8 mol% Y 2 O 3 ), and Y 2 O 3 stabilized ZrO 2 (YSZ) single crystals can function as a high quality matrix for luminescence processes in rare earth ions. [25][26][27] Although the spectroscopic behavior of Nd 3+ in zirconia ceramics has been investigated, there are currently no reports of the optical properties of (ZrO 2 ) 92 (Y 2 -O 3 ) 8−x (Nd 2 O 3 ) x cubic phase single crystals where there should be negligible influence from ions associated with the surface. 28 In the present work, (ZrO 2 ) 92 (Y 2 O 3 ) 8−x (Nd 2 O 3 ) x single crystals containing 8 mol% of a combination of Y 2 O 3 and Nd 2 O 3 were grown from ceramic rods using the optical floating zone method, and their structures were characterized by XRD.…”
Section: Introductionmentioning
confidence: 99%
“…8 mol% Y 2 O 3 ), and Y 2 O 3 stabilized ZrO 2 (YSZ) single crystals can function as a high quality matrix for luminescence processes in rare earth ions. 25–27 Although the spectroscopic behavior of Nd 3+ in zirconia ceramics has been investigated, there are currently no reports of the optical properties of (ZrO 2 ) 92 (Y 2 O 3 ) 8− x (Nd 2 O 3 ) x cubic phase single crystals where there should be negligible influence from ions associated with the surface. 28…”
Transparent single crystals of (ZrO2)92(Y2O3)8-x(Nd2O3)x ( x=0.30, 0.50, 0.75, 1.00, 1.25, 1.50) were prepared by the optical floating zone method, and shown by XRD to have a cubic phase structure....
“…It is accepted that the values of Ω 4 and Ω 6 reflect the stiffness of the single crystals, and χ = Ω 4 / Ω 6 represents a quality factor that is important for characterizing the spectral properties of the (ZrO 2 ) 92 (Y 2 O 3 ) 8- x (Nd 2 O 3 ) x single crystals. 27 In this study, the value of 1.87 for χ is greater than that for Nd 3+ in most other matrices (Table 3), and indicates that (ZrO 2 ) 92 (Y 2 O 3 ) 8 is a potentially valuable matrix material for up-conversion luminescence and near-infrared lasers.…”
Section: Judd–ofelt Analysismentioning
confidence: 55%
“…In this study Ω 4 > Ω 2 > Ω 6 . It is accepted that the 27 In this study, the value of 1.87 for χ is greater than that for Nd 3+ in most other matrices (Table 3), and indicates that (ZrO 2 ) 92 (Y 2 O 3 ) 8 is a potentially valuable matrix material for up-conversion luminescence and near-infrared lasers.…”
Section: Judd-ofelt Analysismentioning
confidence: 58%
“…37 The three emission peaks corresponding to the transitions 4 In most previous studies of rare earth doped YSZ, variation of the number of oxygen vacancies with rare earth doping in YSZ samples where the Y : Zr ratio was kept constant will have induced additional structural distortions from an increased number of oxygen vacancies at high rare earth levels. 27,38 This problem of variation in the number of oxygen vacancies with Nd 3+ content was excluded from the present work by holding the Zr content constant (see Table 1), and the asymmetry at the Nd 3+ site is probably related to local distortions in the (ZrO 2 ) 92 (Y 2 O 3 ) 8−x (Nd 2 O 3 ) x crystal structure caused by the differences in size of the Nd 3+ and Y 3+ ions. It is assumed that the Nd 3+ replaces some of the Y 3+ in the crystal structure because of charge and size similarities, and evidence from section 3.2 shows that the positions of the absorption peaks are independent of Nd 3+ concentration, and thus Nd 3+ substitution does not have a significant effect on the crystal structure.…”
Section: Up-conversion Photoluminescence and Mechanismmentioning
confidence: 99%
“…8 mol% Y 2 O 3 ), and Y 2 O 3 stabilized ZrO 2 (YSZ) single crystals can function as a high quality matrix for luminescence processes in rare earth ions. [25][26][27] Although the spectroscopic behavior of Nd 3+ in zirconia ceramics has been investigated, there are currently no reports of the optical properties of (ZrO 2 ) 92 (Y 2 -O 3 ) 8−x (Nd 2 O 3 ) x cubic phase single crystals where there should be negligible influence from ions associated with the surface. 28 In the present work, (ZrO 2 ) 92 (Y 2 O 3 ) 8−x (Nd 2 O 3 ) x single crystals containing 8 mol% of a combination of Y 2 O 3 and Nd 2 O 3 were grown from ceramic rods using the optical floating zone method, and their structures were characterized by XRD.…”
Section: Introductionmentioning
confidence: 99%
“…8 mol% Y 2 O 3 ), and Y 2 O 3 stabilized ZrO 2 (YSZ) single crystals can function as a high quality matrix for luminescence processes in rare earth ions. 25–27 Although the spectroscopic behavior of Nd 3+ in zirconia ceramics has been investigated, there are currently no reports of the optical properties of (ZrO 2 ) 92 (Y 2 O 3 ) 8− x (Nd 2 O 3 ) x cubic phase single crystals where there should be negligible influence from ions associated with the surface. 28…”
Transparent single crystals of (ZrO2)92(Y2O3)8-x(Nd2O3)x ( x=0.30, 0.50, 0.75, 1.00, 1.25, 1.50) were prepared by the optical floating zone method, and shown by XRD to have a cubic phase structure....
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