期刊文献+

Electrical and Dielectric Characterization of Na<sub>0.5</sub>Li<sub>0.5</sub>Zr<sub>2</sub>(PO<sub>4</sub>)<sub>3</sub>

Electrical and Dielectric Characterization of Na<sub>0.5</sub>Li<sub>0.5</sub>Zr<sub>2</sub>(PO<sub>4</sub>)<sub>3</sub>
下载PDF
导出
摘要 Na0.5Li0.5Zr2(PO4)3has been synthesized by solid state reaction and characterized by thermogravimetry/ differential thermal analyses (TGA/DTA) in the temperature range 300 - 1573 K. X-ray diffraction measure- ments have been carried out to determine the phase of the composition and scanning electron microscopy (SEM) for microstructure evaluation. Impedance spectroscopy at different temperatures (310 - 600 K) and frequencies (300 kHz - 1 GHz) have been carried out and the dielectric relaxation behaviour was determined under the same conditions. A dc conductivity maximum value of 0.25 S/m at 580 K was observed. However, the mixed alkali effect was not observed. The material exhibited relaxation behaviour with a peak in the dielectric permitivity at 469 K. There were no structural transformations observed. Na0.5Li0.5Zr2(PO4)3has been synthesized by solid state reaction and characterized by thermogravimetry/ differential thermal analyses (TGA/DTA) in the temperature range 300 - 1573 K. X-ray diffraction measure- ments have been carried out to determine the phase of the composition and scanning electron microscopy (SEM) for microstructure evaluation. Impedance spectroscopy at different temperatures (310 - 600 K) and frequencies (300 kHz - 1 GHz) have been carried out and the dielectric relaxation behaviour was determined under the same conditions. A dc conductivity maximum value of 0.25 S/m at 580 K was observed. However, the mixed alkali effect was not observed. The material exhibited relaxation behaviour with a peak in the dielectric permitivity at 469 K. There were no structural transformations observed.
机构地区 不详
出处 《Open Journal of Physical Chemistry》 2011年第3期94-103,共10页 物理化学期刊(英文)
关键词 NZP Impedance Spectroscopy Dielectric RELAXATION ELECTRICAL CONDUCTIVITY NZP Impedance Spectroscopy Dielectric Relaxation Electrical Conductivity
  • 相关文献

参考文献1

二级参考文献59

  • 1[1]J.C.Dyre,T.B.Schr(O)der:Rev.Mod.Phys.,2000,72,873.
  • 2[2]K.L.Ngai and C.Leon:Phys.Rev.B,1999,60,9396.
  • 3[3]T.B.Schroder and J.C.Dyre:Phys.Rev.Lett.,2000,84,310.
  • 4[4]D.L.Sidebottom,P.F.Green and R.K.Brow:Phys.Rev.Lett.,1995,74,5068.
  • 5[5]D.L.Sidebottom:Phys.Rev.Lett.,1999,62,3653.
  • 6[6]J.Fu and H.Yatsuda:Phys.Chem.Glasses,1995,36,211.
  • 7[7]Y.Takahashi and K.Yamagnehi:J.Mater.Sci.,1990,25,3950.
  • 8[8]A.A.Kharmolov,R.M.Almeida and J.Heo:J.NonCryst.Solids,1996,202,233.
  • 9[9]H.Zheng,R.Xu and J.D.Mackenzie:J.Mater.Res.,1989,4,911.
  • 10[10]D.Lezal,J.P.P.Kostka,J.Budska,M.Poulain and J.Zavadil:J.Non-Cryst.Solids,2001,284,288.

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