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碳-蒙脱石二维纳米复合粉体制备与提纯 被引量:1

Preparation and Purify of Carbon-Montmorillonite Nano-composite Particles with Two-dimensional Structure
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摘要 以聚乙烯醇、钙基蒙脱石为原料,通过溶液插层、碳化和气流粉碎工艺和技术制备碳-蒙脱石二维纳米粉体。物相和粒径分析结果表明:在钙基蒙脱石、聚乙烯醇、水的质量比为5∶5∶90的反应体系中,获得层间距d(001)=2.11 nm的聚乙烯醇-蒙脱石插层型复合粉体;400℃碳化该复合粉体获得具有三明治结构特征的碳-蒙脱石复合粉体(d(001)=1.56 nm);将碳-蒙脱石复合粉体气流粉碎可得含碳质量分数为6%左右,平均片径约为2μm,厚度小于30 nm的碳-蒙脱石二维纳米粉体,以管状、单片和多片层堆积等形态存在于体系中。通过梯度离心分离法可以提取不同片径的碳-蒙脱石二维纳米复合粉体。 The preparation of montmorillonite-polyvinyl alcohol(PVA) nano-composite particles and formation of corresponding carbonmontmorillonite nano-composite particles with nano-sheet and nano-tube structures were investigated.The montmorillonite-PVA nano-composite particles were prepared by solution intercalation combined with ultrasonic radiation and mechanical stirring.The results show that the nano-composite particles with d(001)=2.11 nm are successfully obtained with optimum mass ratio of montmorillonite,PVA and H2O(5∶ 5∶ 90).The carbon-montmorillonite nano-composite particles(d(001)=1.56 nm) with sandwich structure are prepared by carbonizing montmorillonite-PVA nano-composite particles at 400 ℃,and carbon-montmorillonite nano-sheets or nano-tubes with carbon mass fraction of 6% are obtained by exfoliating sandwich-like composites by airflow pulverization.The average diameter and thickness of the carbon-montmorillonite nano-sheets is about 2 μm and 30 nm,respectively.Different tablet diameter of carbon-montmorillonite two-dimensional nano-particles can be extracted by gradient centrifugation.
出处 《中国粉体技术》 CAS 北大核心 2013年第1期17-21,30,共6页 China Powder Science and Technology
基金 国家"十二五"科技支撑计划项目 编号:2011BAB03B06
关键词 二维纳米粉体 气流粉碎 钙基蒙脱石 梯度离心 two-dimensional nano-composite particles airflow pulverization Ca-montmorillonite gradient centrifugation
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参考文献17

  • 1BAKANDRITSOS A;STERIOTIS T;PETRIDIS D.High surface area montmorillonite-carbon composites and derived carbons[J],2004(08).
  • 2OOKA C;AKITA S;OHASHI Y.Crystallization of hydrothermally treated TiO2 pillars in pillared montmorillonite for improvement of the photocatalytic activity,1999.
  • 3KOZAK M;DOMBA L.Adsorption of the quaternary ammonium salts on montmorillonite,2004.
  • 4陈海群,李英勇,朱俊武,杨绪杰,陆路德,汪信.十二烷基磺酸钠改性蒙脱土的制备与表征[J].无机化学学报,2004,20(3):251-255. 被引量:63
  • 5BEALL G W;GOSS M.Self-assembly of organic molecules on montmorillonite[J],2004(3/4).
  • 6ALEXANDRE M;DUBOIS P.Polymer-layered silicate nano-composites:preparation,properties and uses of a new class of materials,2000.
  • 7GEORGAKILAS V;GOURNIS D;BOURLINOS A B.Clays as a host matrix in the synthesis of organic macrocycles,2003.
  • 8MEHROTA V;GIANNELIS E P;ZIOLO R F.Intercalation of ethylenediamine functionalized buckminsterfullerene in mica-type silicates,1992(01).
  • 9GEORGAKILAS V;GOURNIS D;KARAKASSIDES M A.Organic derivatization of single-walled carbon nanotubes by clays and intercalated derivatives[J],2004(04).
  • 10BAKANDRITSOS A;SIMOPOULOS A;PETR1DIS D.Attachmaent of magnetic nanoparticles on carbon nanotubes and their soluble derivatives[J],2005(07).

二级参考文献5

  • 1[1]Usuki A., Kojoma Y., Kawasumi M. Polym. Prepr., 1987,28,447.
  • 2[2]Nalwa H. S. Handbook of Nanostructured Naterials and Nanotechnology, Chap. 1, Intercalation Compounds in Layered Host Lattices: Supramolecular Chemistry in Nanodimensions, Academic Press: San Diego, 1999,p39.
  • 3[3]van Olphen H. An Introduction to Clay Colloid Chemistry,2nd Ed, Wiley: New York, 1997,p79.
  • 4[4]ZHANG Guo-Yao(张国耀),YI Guo-Zhen(易国祯),WU Li Heng(吴立衡),XU Xiang(徐翔),SONG Qing(宋青),YANG Yu(杨宇) Gaofengzi Xuebao (Acta Polymerica Sinica), 1999,(5),309.
  • 5[5]Usuki A., Koiwai A., Kojime Y., Kawasumi M., Okada A.,Kurauchi T., Kamigato O. Journal of Applied Polymer Science, 1995,(55),119.

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