欢迎登录材料期刊网

材料期刊网

高级检索

用钛酸丁酯和NiCl2制备凝胶,以十二烷基硫酸钠(SDS)/正丁醇/正庚烷/水组成的四元微乳液体系对凝胶进行化学剪裁并用KBH4还原,然后在500℃下煅烧30min,得到了直径为40~100nm,长度为150~700nm的纳米棒状NiTiO3.并用TEM和XRD对产物的物相和结构进行表征.XRD结果表明,NiTiO3晶体呈纳米棒状,属于钛铁矿结构的三方晶系.TEM分析表明,在500℃煅烧,随着煅烧时间的延长,制备的颗粒从球形变为棒状,最后变为四方粒状、短柱状晶体.NiTiO3的粒径和形貌与煅烧温度和煅烧时间有关.

Nickel titanate (NiTiO3) nanorods with a diameter of 40~ 100nm and a length of 150~700nm have been prepared by gel-mieroemulsion chemical tailoring method. The gel prepared by nickel chloride and Ti(OC4 H9 )4 was tailored and reduced with KBH4 in quaternary sodium dodecyl sulfate(SDS)/n-butanol/n-heptane/water microemulsion, and then calcined at 500℃ for 30min. Transmission electron microscope (TEM) and X-ray diffraction characterizations indicated that NiTiO3 nanoerystallites were rod-shaped ilmenite structures with trigonal system. TEM images of the samples indicated that with increasing of the calcination time from 30min to 180min at 500℃ the as-prepared particles grew from spherical to rod-like shape, then to irregular rodlike shape, last to large tetragonal granular-shaped or short columnar-shaped crystallites. The particle size of NiTiO3 crystallite and morphology were influenced by the temperature and the time of calcination.

参考文献

[1] Yamamoto O;Takeda Y;Kanno R et al.[J].Solid State Ionics,1987,22:241.
[2] Shimizu Y;Uemura L;Miura N et al.[J].Chemistry Letters,1988,67:1979.
[3] Obayashi H;Sakurai Y;Gejo T .[J].Journal of Solid State Chemistry,1976,17:299.
[4] M Skoglundh;L Lowedalh;K Janson et al.[J].Applied Catalysis,1970,53:56.
[5] Taylor DJ.;Fleig PF.;Page RA. .Characterization of nickel titanate synthesized by sol-gel processing[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2002(1/2):104-110.
[6] Taylor D J;Fleig P F;Schwab S T et al.[J].Surface and Coatings Technology,1999,120:465.
[7] Singh R S;Ansari T H;Singh R A et al.[J].Materials Chemistry and Physics,1995,40:173-177.
[8] Zu Y;Lei Y Y .[J].Chemistry World,1992,33(02):49-52.
[9] Peng Z F;Wang G Z;Zhan L D .[J].Synthetic Chemistry,1996,4(02):99-101.
[10] Marcilly C;Courty P;Delmon B J .[J].Journal of the American Ceramic Society,1970,53:56.
[11] Taguchi H;Matsuda D;Nagao M et al.[J].Journal of the American Ceramic Society,1992,75:201.
[12] Sreedhar K.;Mitra A. .Low-Temperature Synthesis of Lead Tantalate Pyrochlore Solid Solutions Pb_(1.5+x)(Ta_(2-y)Pb_y)O_(7-#delta#)(0.0<x<0.5; 0.0<y<0.6)[J].Journal of the American Ceramic Society,2000(2):418-420.
[13] Horikawa T;Mikami N;Makita T et al.[J].Japanese Journal of Applied Physics,1993,32:4126.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%