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Synthesis of Various Types of Nano Carbons Using the Template Technique

机译:利用模板技术合成各种类型的纳米碳

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Using uniform nanochannels of an aluminum anodic oxide film as a template,uniform and unique multiwalled carbon nanotubes can be synthesized with a selectivity of 100%.This technique allows one to precisely control the diameters and the length of nanotubes.Moreover,it is possible to chemically modify only the inner surface of carbon nanotubes and to prepare carbon nanotubes with a double coaxial structure of heteroatom-doped multiwalls.The test tube like carbon prepared by this technique was found to be dispersible in water without any post treatment.In addition to this one-dimensional approach,unique microporous carbon can be prepared by the template technique using zeolite Y.The resulting microporous carbons are characterized by their regular ordering,originating from the regularity of the parent zeolite.When the synthesis conditions were optimized,the specific surface area and the micropore volume of the zeolite-templated carbon reach more than 4000m~2 g~(-1)and 1.8 cm~3 g~(-1),respectively.This review introduces such a template-mediated approach and highlights how useful and versatile the template technique is for the production of nano carbons.
机译:以铝阳极氧化膜的均匀纳米通道为模板,可以以100%的选择性合成均匀且独特的多壁碳纳米管。该技术可以精确控制纳米管的直径和长度。仅对碳纳米管的内表面进行化学修饰,以制备具有杂原子掺杂的多壁双同轴结构的碳纳米管。通过这种技术制备的类似碳的试管发现无需任何后处理即可分散在水中。一维方法,可以使用Y型沸石通过模板技术制备独特的微孔碳。所得微孔碳的特征在于其规则有序排列(起源于母体沸石的规则性)。当优化合成条件时,比表面积沸石模板碳的微孔体积分别达到4000m〜2 g〜(-1)和1.8 cm〜3 g〜(-1),resp这篇综述介绍了这种由模板介导的方法,并着重说明了模板技术对生产纳米碳有多么有用和通用。

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