期刊文献+

微乳液法合成铬酸钡微晶

Synthesis of Micro-crystalline BaCrO_4 in Microemulsion System
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摘要 在低温下,利用PVP/H2O/环己醇的新胶束体系合成了正交相的BaCrO4微纳材料。与传统的以烷烃作为油相的微乳液相比,这种新的胶束体系表现出一定的特殊性。环己醇形成油相,提供了一种高度均一的环境,得到的产品大小均一,分布均匀,并且不需要极端的温度和压力,不需要其他的特殊仪器设备,易于操作。 On the basis of relative references,we tried a facile,effective and new micelle system to synthesize micro/nanomaterials.In the new micelle system of PVP/H2O/ cyclohexanol,BaCrO4 micro/nanomaterials were synthesized practically in the low temperature.In comparison with the traditional microemulsion in which alkyl hydrocarbon was the oil phase,the new micelle system exhibited some particularity.Cyclohexanol as the oil phase can afford a stable and homogeneous reaction environments.And we could get products with uniform size and well-proportioned distribution.There was no need of extreme temperature and press in the system,and the equipment was simple and easy-controlled.
作者 田广茹
出处 《济宁学院学报》 2010年第3期29-32,共4页 Journal of Jining University
关键词 胶束 微乳液 铬酸钡 微纳材料 micelle microemulsion barium chromate micro/nanomaterials
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参考文献22

  • 1J.Economy,D.T.Meloon Jr.,R.L.Ostrozynski,Supported barium chromate-A new oxidation catalyst[J].J.Catal.,1965,4,446-453.
  • 2J.Yin,Z.Zou,J.Ye,Photophysical and photocatalytic properties of new photocatalysts MCrO4 (Sr,Ba)[J].Chem.Phys.Lett.,2003,378,24-28.
  • 3S.H.Yu,H.Colfen,M.Antonietti,Control of the Morphogenesis of Barium Chromate by Using Double-Hydrophilic Block Copolymers (DHBCs) as Crystal Growth Modifiers[J].Chem.Eur.J.,2002,8,2937-2945.
  • 4S.H.Yu,M.Antonietti,H.Co¨ lfen,J.Hartmann,Growth and Self-Assembly of BaCrO4 and BaSO4 Nanofibers toward Hierarchical and Repetitive Superstructures by Polymer-Controlled Mineralization Reactions[J].Nano Lett.,2003,3,379-382.
  • 5S.H.Yu,H.Co¨ lfen,M.Antonietti,The combination of colloid controlled heterogeneous nucleation and polymer controlled crystallization:facile synthesis of separated,uniform high aspect ratio single crystalline BaCrO4 nanofibers[J].Adv.Mater.,2003,15,133-136.
  • 6H.T.Shi,L.M.Qi,J.M.Ma,H.M.Cheng,B.Y.Zhu,Synthesis of Hierarchical Superstructures Consisting of BaCrO4 Nanobelts in Catanionic Reverse Micelles[J].Adv.Mater.,2003,15,1647-1651.
  • 7Y.B.Mao,S.S.Wong,General,Room-Temperature Method for the Synthesis of Isolated as Well as Arrays of Single-Crystalline ABO4-Type Nanorods[J].J.Am.Chem.Soc.,2004,126,15245-15252.
  • 8J.H.Liang,Q.Peng,X.Wang,X.Zheng,R.J.Wang,X.P.Qiu,C.W.Nan,Y.D.Li,Chromate Nanorods/Nanobelts:General Synthesis,Characterization,and Properties[J].Inorg.Chem.,2005,44,9405-9415.
  • 9L.Liu,Q.S.Wu,Y.P.Ding,H.Liu,Morphologies of barium chromate controlled by carriers in an emulsion liquid membrane system[J].J.Cryst.Res.Technol.,2006,41,27-31.
  • 10Y.Yan,Q.S.Wu,L.Li,Y.P.Ding,Simultaneous Synthesis of Dendritic Superstructural and Fractal Crystals of BaCrO4 by Vegetal Bi-templates[J].Cryst.Growth Des.,2006,6,769-773.

二级参考文献12

  • 1Nikl M,Bohacek P,Mihokova E,et al.J Lumin[J].2000,87:1 136
  • 2Roy B N,Roy M R.Cryst Res Tech[J].1981,16:1 267
  • 3Nishigaki S,Yano S,Kato H,et al.Am Ceram Soc[J].1988,71:C-11
  • 4Cho W S,Yoshimura M.Jpn JAppl Phys[J].1997,36:1 216
  • 5Burda C,Chen X,Narayanan R.Chem Rev[J].2005,105:1 025
  • 6Park J,Koo B,Yoon K Y,et al.JAmChemSoc[J].2005,127:8433
  • 7Xie B,Wu Y,Jiang Y,et al.J Crys Grow[J].2002,235:283
  • 8Shi H T,Qi L M,Ma J M,et al.J Am Chem Soc[J].2003,125:3 450
  • 9Dubois M,Deme B,Gulik-Krzywicki T,et al.Nature[J].2001,411:672
  • 10Hentze H,Raghavan S R,McKelvey C A,et al.Langmuir[J].2003,19:1 069

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