期刊文献+

钙辅助溶胶-凝胶碳热还原法合成超细氮化铝粉体 被引量:9

Effect of Ca-compound on low temperature synthesis of AlN ultrafine powders by carbothermal reduction nitride route from sol-gel precursor
下载PDF
导出
摘要 以硝酸铝、葡萄糖和硝酸钙为原料,通过溶胶-凝胶工艺获得了组分均匀的Al2O3、C和CaO前驱体,进而利用碳热还原反应合成超细氮化铝粉体,探讨了钙助剂对氮化铝合成温度及粉体颗粒生长的影响规律。结果表明:钙助剂的添加,通过与前驱体中氧化铝在较低温度下发生反应,先后生成CaAl4O7、Ca3Al10O18、CaAl2O4和Ca12Al14O33等铝酸钙相;上述铝酸钙相能在较低温度下形成液相,可有效促进氮化铝的合成和粉体颗粒的生长,从而在1400℃合成纯相氮化铝。当原料中钙铝摩尔比为0.0262时,在1350℃氮化得到了粒径60~80nm的氮化铝粉体,仅有少量铝酸钙相存在;当氮化温度上升至1400℃时,铝酸钙相因挥发而消失,得到粒径100~180nm的单相氮化铝粉体。 AlN ultrafine powders were synthesized at a low temperature by carbothermal reduction nitride(CRN)route from a sol-gel precursor by using aluminum nitrate,glucose and calcium nitrate as raw materials.The influence of Ca-compound on the phase transformation behavior of the precursors,as well as the particle size and morphology of synthesized AlN powders were investigated.X-ray diffraction patterns showed that Ca-compound reacted with alumina powder and resulted in aluminate phases of CaAl4O7,Ca3Al10O18,CaAl2O4 and Ca12Al14O33.Those aluminate phases became liquid phase during the nitradation process,which promoted the transformation of Al2O3 to AlN and vaporized at a high temperature.Compared to the approach without additive,Ca-compound addition reduced the synthesis temperature of AlN from 1500℃ to 1400℃.SEM photographs showed that AlN powders synthesized with Ca-compound addition were larger than those without Ca-compound addition,and high doping of Ca-compound led to the growth of AlN powders.With / of 0.0262,the particle sizes of AlN powders synthesized at 1350℃ were 60—80 nm.When the nitradation temperature was increased to 1400℃, the single AlN with the particle sizes of 100—180 nm was obtained.
出处 《化工学报》 EI CAS CSCD 北大核心 2012年第6期1907-1912,共6页 CIESC Journal
基金 浙江省自然科学基金项目(Y1110648) 浙江省优先主题重点工业项目(2011C11026)~~
关键词 氮化铝 超细粉体 钙助剂 溶胶-凝胶 低温合成 AlN ultrafine powder Ca-compound sol-gel low temperature synthesis
  • 相关文献

参考文献17

  • 1Sheppard L M.Aluminum nitride:a versatile butchallenging material[J].Journal of the America CeramicsSociety Bulletin,1990,69(11):1801-1812. 被引量:1
  • 2Baik Y,Drew R A L.Aluminum nitride:processing andapplications[J].Key Engineering Materials,1996,122/123/124:553-570. 被引量:1
  • 3He X L,Ye F,Zhang H J,Liu L M.Effect of Sm2O3content on microstructure and thermal conductivity of sparkplasma sintered AlN ceramics[J].Journal of Alloys andCompounds,2009,482(1/2):345-348. 被引量:1
  • 4Baranda P S,Knudsen K A,Edwin R.Effect of yttria onthe thermal conductivity of aluminum nitride[J].Journalof the American Ceramics Society,1994,77(7):1846-1850. 被引量:1
  • 5Enloe J H,Rice R W,Lau J W,Kumar R,Lee S Y.Microstructural effects on the thermal conductivity ofpolycrystalline aluminum nitride[J].Journal of theAmerican Ceramics Society,1991,74(4):2214-2219. 被引量:1
  • 6Kuramoto N,Taniguchi H,Aso I.Sintering and propertiesof high-purity AlN ceramics[J].Advanced Ceramics,1989,26:107-109. 被引量:1
  • 7Hashimoto N,Yoden H,Deki S.Sintering behavior of finealuminum nitride powder synthesized from aluminumpolynuclear complexes[J].Journal of the AmericanCeramics Society,1992,75(8):2098-2106. 被引量:1
  • 8Panchula M L,Ying J Y.Nanocrystalline aluminum nitride(Ⅱ):Sintering and properties[J].Journal of theAmerican Ceramics Society,2003,86(7):1121-1127. 被引量:1
  • 9Watari K,Brito M E,Yasuoka M,Valecillos M C,Kanzaki S.Influence of powder characteristics on sinteringprocess and thermal conductivity of aluminum nitrideceramics[J].Journal of the Ceramic Society of Japan,1995,103(9):891-900. 被引量:1
  • 10Kuang J C,Zhang C R,Zhou X G,Wang S Q.Influenceof processing parameters on synthesis of nano-sized AlNpowders[J].Journal of the Crystal Growth,2004,263(1/2/3/4):12-20. 被引量:1

二级参考文献13

  • 1戴长虹,张显鹏,张劲松,杨永进,曹丽华,夏非.微波法合成AlN纳米微粉[J].金属学报,1996,32(11):1221-1226. 被引量:10
  • 2Mussler B H.Advanced materials & powders[J].Am Ceram Soc Bull,2000,79(6):45-47. 被引量:1
  • 3Sheppard L M.Aluminum nitride:a versatile but challenge material [J].Am Ceram Soc Bull,1990,69(11):1801 - 1812. 被引量:1
  • 4Pathak L C,Ray A K,Das S,et al.Carbothermal synthesis of nanocrystalline aluminum nitride powders [J].J Am Ceram Soc,1999,82(1):257-260. 被引量:1
  • 5Hashimoto N,Yoden H,Nomura K.Preparation of aluminum nitride powder from aluminum polynuclear complexes[J].J AmCeramSoc,1991,74(6):12821286. 被引量:1
  • 6Cho Y W,Charles J A.Synthesis of nitrogen ceramic powders by carbothermal reduction and nitridation,Part 3:aluminum nitride [J].Mater Sci Tech,1991,7:495-504. 被引量:1
  • 7Forsland B,Zheng J.Carbothermal synthesis of aluminum nitride at elevated nitrogen pressure,Part Ⅰ:effect of process parameters on conversion rate[J].J Mater Sci,1993,28:3125-3131. 被引量:1
  • 8周和平,刘耀诚,吴音.氮化铝陶瓷的研究与应用[J].硅酸盐学报,1998,26(4):517-522. 被引量:66
  • 9田玉明,黄平,冷叔炎,梁丽萍,Mihal Barladeanu.沉淀法的研究及其应用现状[J].材料导报,2000,14(2):47-48. 被引量:36
  • 10郑仕远,陈健,潘伟.湿化学方法合成及应用[J].材料导报,2000,14(9):25-27. 被引量:30

共引文献13

同被引文献112

引证文献9

二级引证文献22

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