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胶晶模板法制备有序大孔炭材料研究进展 被引量:3

ADVANCES OF COLLOIDAL CRYSTAL TEMPLATING METHOD TO PREPARE THREE-DIMENSIONAL ORDERED CARBON MATERIALS
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摘要 三维有序大孔炭材料(3DOCM)在光子晶体、催化剂载体、生物传感器和电极材料等方面具有潜在的应 用前景,SiO2胶晶模板法是制备有序大孔炭材料的有效方法。制备步骤主要包括SiO2模板的组装、炭前驱填 充及模板去除。本文综合所查文献,对有序大孔炭材料的制备及应用做了简要介绍。 Three-dimensional ordered macroporous carbon materials (3DOCM) have a potential application feature in many fields such as photonic crystals,catalysts supports,biosensors and electrode materials etc. Colloidal crystal templating method is an effective method to prepare these 3DOCM materials/The method mainly involves three steps including fabrication of template from monodisperse SiO2 particles,deposition of desired precursor inside the template and removal of the template. In this paper,a briefly review about the synthesis and application of such 3DOCM materials is provided according to correlative document.
出处 《炭素》 2005年第4期26-30,共5页 Carbon
关键词 二氧化硅 胶晶模板 三维有序大孔材料 SiO2 colloidal crystal template three-dimensional ordered macroporous carbon material
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参考文献24

  • 1Velev O D, Kaler E W. Structured porous materials via colloidal crystal templating:from inorganic oxides to metals [J]. Adv.Mater. ,2000,12(7) :531-534.
  • 2Yan H W,Blanford C F,Holland B T,Smyrl W H, Stein A. General Synthesis of Periodic Macroporous Solids by Templated Salt Precipitation and Chemical Conversion [J].Chem. Mater. , 2000 ,12 .1134-1141.
  • 3Gautam Gundiah and C. N. R. Rao. Macroporous oxide materials with three-dimensionally interconnected pores[J]. Solid State Sci. ,2000,2(8) :877-882.
  • 4Holland B T,Blanford C F,T D,Stein A.Synthesis of Highly Ordered, Three- Dimensional, Macroporous Structures of Amorphous or Crystalline Inorganic Oxides,Phosphates, and Hybrid Composites [J ].Chem. Mater. ,1999,11:795-805.
  • 5Johnson S A,Ollivier P J,Mallouk T E. Ordered mesoporous polymers of tunable pore size from colloidal silica templates [J]. Science, 1999,283: 963- 965.
  • 6Li,Z. ,Jaroniec,M.. Colloidal Imprinting:A Novel Approach to the Synthesis of Mesoporous Carbons [J]. AM. CHEM. SOC.,2001,123: 9208- 9209.
  • 7Velev O D,Jede T A,Lobo R F,et al. Porous silica via colloid crystallization [J]. Nature,1997,389: 447-448.
  • 8Chai G S, Yoon S B, Yu J S,et al. orderd porous carbons with Tunable poresizes as catalyst supports in Direct Methanol Fuel cell.
  • 9Stober W, Fink A, Bohn E. Controlled Growth of Monodisperse Silica Spheres in the Micron Size Range [J]. J. Colloid Interf. Sci. 1968,26:62-69.
  • 10F.J. Arriagada and K. Osseo-Asare. Controlled Hydrolysis of Tetraethoxysilane in a Nonionic Water-in-Oil Microemulsion:A Statistical Model of Silica Nucleation [J].Colloid Surf. , 1999,154: 311- 326.

二级参考文献64

  • 1[1]STEIN A.Sphere templating methods for periodic porous solids[J].Microporous and Mesoporous Materials,2001,44-45:227-239.
  • 2[2]VELEV O D,JEDE T A,LOBO R F,et al.Porous silica via colloidal crystallization[J].Nature,1997,389:447-448.
  • 3[3]WIJNHOVEN J E G J,VOS W L.Preparation of photonic crystals made of air soheres in titania[J].Science,1998: 802-804.
  • 4[4]HOLLAND B T,BLANDFORD C F,STEIN A.Synthesis of highly ordered three dimensional macroporous structures of amorphous or crystalline inorganic oxides,phosphates,and hybrid composites[J].Chem Mater,1999,11:795-805.
  • 5[5]YAN H W,BLANDFORD C F,BLANDFORD B T,et al.General synthesis of periodic macroporous solids by templated salt precipitation and chemical conversion[J].Chem Mater,2000,12:1134-1141.
  • 6[6]VOS W L,MEGENS M,van KATS C M,et al.X-ray diffraction of photonic colloidal single crystals[J].Langmuir,1997,13:6004-6008.
  • 7[7]WOODCOCK L V.Entropy difference between crystal phases[J].Nature,1997,385:141-143.
  • 8[1]XIA Y N, GATES B, YIN Y D, et al. Monodispersed colloidal spheres: Old materials with new applications [J]. Advanced Materials, 2000,12(10):693.
  • 9[2]FUKUDA K, SUN H B, et al. Self-organizing three-dimensional colloidal photonic crystal structure with augmented dielectric contrast [J]. Jpn J Appl Phys, 1998,37:508.
  • 10[3]HOLGADO M, et al. Electrophoretic deposition to control artificial opal growth[J]. Langmuir,1999,15:4701.

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