期刊文献+

Morphological Evolution during Synthesis of New AlPO4·H2O Crystal 被引量:1

Morphological Evolution during Synthesis of New AlPO4·H2O Crystal
下载PDF
导出
摘要 A new crystal of aluminophosphate, AIPO4·H2O, is synthesized from two-batch aqueous solution under hydrothermal conditions. Three types of the crystal habits, i.e. the tetragonal double pyramid, the tetragonal prism and the plate-type tetragonal prism, are found from batch-A solution. Two types of the crystal habits, i.e. the hexagonal pyramid and the strip-type tetragonal prism, are found from batch-B solution. The change of crystal morphology is originated from the fluctuation of the synthesis conditions, such as the supersaturation, the temperature and the impurity content. It causes change of the step energies, the defect density and the step roughness, and further, change of the growth rates. Since the crystal morphology is sensitive to the mass transport mechanism, the crystal habits could be changed under the microgravity. A new crystal of aluminophosphate, AIPO4·H2O, is synthesized from two-batch aqueous solution under hydrothermal conditions. Three types of the crystal habits, i.e. the tetragonal double pyramid, the tetragonal prism and the plate-type tetragonal prism, are found from batch-A solution. Two types of the crystal habits, i.e. the hexagonal pyramid and the strip-type tetragonal prism, are found from batch-B solution. The change of crystal morphology is originated from the fluctuation of the synthesis conditions, such as the supersaturation, the temperature and the impurity content. It causes change of the step energies, the defect density and the step roughness, and further, change of the growth rates. Since the crystal morphology is sensitive to the mass transport mechanism, the crystal habits could be changed under the microgravity.
出处 《Chinese Physics Letters》 SCIE CAS CSCD 2005年第10期2704-2707,共4页 中国物理快报(英文版)
  • 相关文献

参考文献18

  • 1Akata B, Yilmaz B, Siricharn S S,Juliusz W and Sacco A 2004 Micropor. Mesopor. Mater. 71 1.
  • 2Zhou Y F,Wang J C, Tong L A, Che N F and Chen W C 2003 Proc. Congress of the Chinese Ceramic Society and 13th Conference on Crystal Growth (18-21 September 2003, Beijing) p 429.
  • 3Zhang F Q, Chen N F and Wu J L et al 2004 Chin. J.Space Sci. 24 55.
  • 4Siche D, Bottcher K, Rinas U and Hartmann H 2002 J.Crystal Growth 244 249.
  • 5Sacco A, Nac N Jr and Dixon et al 1994 NASA Conf. Proc.3272 447.
  • 6Sacco A, Nac N Jr and Warzywoda et al 1996 AIP Conf.Proc. 316 429.
  • 7Akporiaye D E, Stocker M and Junggreen H 1995 Adv.Space Res. 16 55.
  • 8Chen W C, Li C R and Liu D D 2003 J. Crystal Growth 254 169.
  • 9Chen W C, Chen N F, Ding B Z and Xue D T 2000 Chin.J. Space Sci. 20 91.
  • 10Chen W C 1997 Adv. Astronaut. Sci. 96 511.

同被引文献9

引证文献1

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部