Search / Korean Journal of Chemical Engineering
HWAHAK KONGHAK,
Vol.34, No.3, 383-388, 1996
졸겔법과 수열처리에 의한 베타 리튬알루미네이트의 막대모양 결정성장
Rod-like Crystal Growth of β-LiAlO2 by Sol-Gel Method and Hydrothermal Treatment
리튬 알콕사이드[(CH3)2CHOLi 혹은 C2H5CH(CH3)OLi]와 알루미늄 알콕사이드[(CH3)2CHO]3Al 혹은[C2H5CH(CH3)O]3Al)를 각각의 알콕사이드 그룹에 상응하는 알코올에서 반응시킨 뒤 졸-겔과정 및 수열처리과정을 거쳐 막대모양의 리튬알루미네이트 입자를 제조하는 방법을 제안하였으며, SEM과 XRD를 이용하여 입자의 특성을 조사하였다. 생성된 리튬알루미네이트는 β상이며, 공기 중 700℃에서 소결하여도 상변호가 없이 안정하였다. 졸-겔과정을 거치지 않거나, 가수분해시 CH3COOH, NaOH수용액 혹은 templating agent인 tetrapropylammonium bromide를 첨가한는 경우에는 막대모양의 입자가 생성되지 않고 판형 혹은 비균질의 입자가 생성되었다.
Rod-like lithium aluminate was prepared by a sequence of sol-gel process and hydrothermal process. The starting materials were lithium alkoxide[(CH3)2CHOLi or C2H5CH(CH3)OLi], aluminium alkoxide([(CH3O2CHO]3Al or [C2H5CH(CH3)O]3Al), and the corresponding alcohol as a solvent. Lithium aluminate was in β-phase and there was no phase transformation after sintering at 700℃. But either plate-like or irregular shaped particles were obtained when sol-gel process was skipped or when CH3COOH, NaOH solution or tetrapropylammonium bromide as a templating agent was added during the hydrolysis.
[References]
  1. Alvani C, Casadio S, Lorenzini L, Brambella G, Fusion Technol., 10, 106, 1986
  2. Kinoshita K, Sim JW, Ackerman JP, Mater. Res. Bull., 13, 445, 1978
  3. Turner CW, Clatworthy BC, Gin AHY, Adv. Ceram., 25, 141, 1989
  4. Hirano SI, Hayashi T, Kakeyama T, J. Am. Ceram. Soc., 70(3), 171, 1987
  5. Jung JM, Park SB, HWAHAK KONGHAK, 32(6), 853, 1994
  6. Jung JM, Park SB, J. Mater. Sci. Lett., in press, 1995
  7. Furuta S, Katsuki H, Takagi H, J. Mater. Sci. Lett., 13(15), 1077, 1994
  8. Watanabe S, Takeuchi Y, Saeki G, J. Am. Ceram. Soc., 73(10), 3094, 1990
  9. Watanabe S, Takeuchi Y, Saeki G, J. Am. Ceram. Soc., 70(10), 268, 1987
  10. Watanabe S, Takeuchi Y, Saeki G, J. Ceram. Soc. Jpn., 100(12), 1421, 1992
  11. Komameni S, Roy R, Breval E, Ollinen M, Suma Y, Adv. Ceram. Mater., 1(1), 87, 1986
  12. Segal D, "Chemical Synthesis of Advanced Ceramic Materials," pp. 114-123, Cambridge Univ. Press, N.Y., 1989
  13. Somya S, Mater. Res. Soc. Symp. Proceed., 24, 255, 1984
  14. Bradley DC, "Metal Alkoxide," Academic Press, London, 1978