DOI QR코드

DOI QR Code

스컬용융법에 의해 성장시킨 Co와 Pr이 첨가된 이트리아안정화큐빅지르코니아(YSZ) 단결정의 연구

Investigation of Co- and Pr-doped yttria-stabilized cubic zirconia (YSZ) single crystal grown by skull melting method

  • 문소이 (동신대학교 보석귀금속학과) ;
  • 석정원 (동신대학교 보석귀금속학과)
  • Moon, So-I (Department of Gem and Precious Metals, Dongshin University) ;
  • Seok, Jeong-Won (Department of Gem and Precious Metals, Dongshin University)
  • 투고 : 2014.06.26
  • 심사 : 2014.07.21
  • 발행 : 2014.08.31

초록

Co(0.7 wt%)와 Pr(2.0, 3.5 및 5.0 wt%)이 첨가된 큐빅지르코니아($ZrO_2:Y_2O_3=50:50wt%$) 단결정을 스컬용융법으로 성장 후 $N_2$ 분위기에서 $1150^{\circ}C$로 5시간 동안 열처리 하였다. 갈색의 단결정들은 각각 어두운 갈녹색, 녹청색 또는 밝은 녹색으로 변화되었다. 열처리 전 후의 YSZ 단결정들을 직경 7.5, 두께 3 mm의 웨이퍼로 연마 하여 UV-VIS 분광광도계 및 XRD(X-ray diffraction)로 광학적 또는 구조적 특성 분석을 행하였다. $Co^{2+}$(약 589 nm: ${\Gamma}_8[^4A_2(^4F)]{\rightarrow}{\Gamma}_8+{\Gamma}_7[^4T_1(^4F)]$, 약 610 nm: ${\Gamma}_8[^4A_2(^4F)]{\rightarrow}{\Gamma}_8[^4T_1(^4F)]$, 약 661 nm: ${\Gamma}_8[^4A_2(^4F)]{\rightarrow}{\Gamma}_6[^4T_1(^4F)]$$Pr^{3+}$(약 450 nm: ${^3}H{_4}-{^3}P{_2}$, 약 473 nm: ${^3}H{_4}{\rightarrow}{^3}P{_1}$, 약 484 nm: ${^3}H{_4}{\rightarrow}{^3}P{_0}$)에 의한 흡수, 이온화에너지 및 격자상수 변화를 확인하였다.

Co-(0.7 wt%) and Pr-(2.0, 3.5 or 5.0 wt%) doped cubic zirconia ($ZrO_2:Y_2O_3=50:50wt%$) single crystals grown by a skull melting method were heat-treated in $N_2$ at $1150^{\circ}C$ for 5 hrs. The brown colored as-grown single crystals were changed into either dark brownish green, greenish blue and light green color after the heat treatment. Before and after the heat treatment, the YSZ (yttria-stabilized zirconia) single crystals were cut for wafer form (${\phi}7.5mm{\times}t3mm$). The optical and structural properties were examined by UV-VIS spectrophotometer and X-ray diffraction. Absorption by $Co^{2+}$(${\fallingdotseq}589nm$: ${\Gamma}_8[^4A_2(^4F)]{\rightarrow}{\Gamma}_8+{\Gamma}_7[^4T_1(^4F)]$, ${\fallingdotseq}610nm$: ${\Gamma}_8[^4A_2(^4F)]{\rightarrow}{\Gamma}_8[^4T_1(^4F)]$], ${\fallingdotseq}661nm$: ${\Gamma}_8[^4A_2(^4F)]{\rightarrow}{\Gamma}_6[^4T_1(^4F)]$]) and $Pr^{3+}$(${\fallingdotseq}450nm$: ${^3}H{_4}-{^3}P{_2}$, ${\fallingdotseq}473nm$: ${^3}H{_4}{\rightarrow}{^3}P{_1}$, ${\fallingdotseq}484nm$: ${^3}H{_4}{\rightarrow}{^3}P{_0}$), change of ionization energy and lattice parameter were confirmed.

키워드

참고문헌

  1. T. Ishiia and T. Ishikawa, "Mechanisms of conductivity ceiling in YSZ", Solid State Ionics 177 (2006) 1573. https://doi.org/10.1016/j.ssi.2006.06.004
  2. X. Jiayue, L. Xiuyun, J. Xin, H. Qingbo, F. Yongzheng, Z. Daobiao and H. Xuemei, "Industrial growth of yttria-stabilized cubic zirconia crystals by skull melting process", J. Ra. Ear. 27(6) (2009) 971. https://doi.org/10.1016/S1002-0721(08)60372-5
  3. J.F. Wenckus, "Mass production of refractory oxide crystals: cubic zirconia", J. Cryst. Growth 128(1-4) (1993) 13. https://doi.org/10.1016/0022-0248(93)90289-9
  4. J.W. Seok, "The ionization energy and lattice parameters of Co- and Ce-doped cubic zirconia (YSZ) single crystal", J. Korean Cryst. Growth Cryst. Technol. 20(4) (2010) 160. https://doi.org/10.6111/JKCGCT.2010.20.4.159
  5. P.L. Lee, E. Huangb, J.S. Lee and S.C. Yu, "Effects of $Cr^{3+}$ impurity concentration on the crystallography of synthetic emerald crystals", J. Cryst. Growth 324 (2011) 263. https://doi.org/10.1016/j.jcrysgro.2011.03.042
  6. W.T. Kim, S.K. Oh, H.J. Song, K.D. Park, T.Y. Park and H.L. Park, "Optical properties of ${\alpha}-ZnGa_2Se_4\;:\;Co^{2+}$ single crystals", J. Kor. Phys. Soc. 37(1) (2000) 81.
  7. Y.S. Kim and C.D. Kim, "Optical absorption of $Co^{2+}$ ions with $S_4$ symmetry in $CdGa_2S_4\;:\;Co^{2+}$", J. Kor. Phys. Soc. 40(5) (2002) 953.
  8. Ch. VenkataReddy, Ch. RamaKrishna, T. RaghavendraRao, D.V. Sathish, P. S. Rao and R.V.S.S.N. Ravikumar, "Synthesis and optical properties of $Co^{2+}$ and $Ni^{2+}$ ions doped ${\beta}-BaB_2O_4$ nanopowders", J. Lumin. 132 (2012) 2328.
  9. K.H. Lee, K.W. Chae, C.I. Cheon and J.S. Kim, "Effect of crystal structural environment of $Pr^{3+}$ on photoluminescence characteristics of double tungstates", J. Kor. Ceram. Soc. 48(2) (2011) 185. https://doi.org/10.4191/KCERS.2011.48.2.183
  10. M.R.N. Soares, C. Nico, J. Rodrigues, M. Peres, M.J. Soares, A.J.S. Fernandes, F.M. Costa and T. Monteiro, "Red and infrared luminescence from tetragonal YSZ : $Pr^{3+}$ single crystal fibres grown by LFZ", J. Opt. Mater. 34 (2011) 28.
  11. F. Ramos-Brito, C. Alejo-Armenta, M. Garca-Hiplito, E. Camarillo, J. Hernndez A, H. Murrieta S and C. Falcony, "Photoluminescent emission of $Pr^{3+}$ ions in different zirconia crystalline forms", J. Opt. Mater. 30 (2008) 1845.
  12. J.E. Muoz-Santiuste, B. Savoini and R. Gonzlez, "$Pr^{3+}$ Centers in YSZ single crystals", J. Allo. and Comp. 323-324 (2001) 770.
  13. J.W. Seok and J.K. Choi, "Color-change for ligand field of cobalt doped yttria stabilized cubic zirconia (YSZ) single crystal", J. Korean Cryst. Growth Cryst. Technol. 17(1) (2007) 37.
  14. Q. Zhanga, H. Suna, X. Wang, Y. Zhang and X. Liaa, "Strong photoluminescence and piezoelectricity properties in Pr-doped $Ba(Zr_{0.2}Ti_{0.8})O_3\;(Ba_{0.7}Ca_{0.3})TiO_3$ ceramics: Influence of concentration and microstructure", J. Eur. Ceram. Soc. 34 (2014) 1442.