Beijing Key Laboratory of Green Chemical Reaction Engineering and Technology, Department of Chemical Engineering, Tsinghua University, 100084 Beijing, PR China.
ChemSusChem. 2010 Apr 26;3(4):453-9. doi: 10.1002/cssc.201000002.
The growth of carbon nanotubes (CNTs) on natural materials is a low-cost, environmentally benign, and materials-saving method for the large-scale production of CNTs. Directly building 3D CNT architectures on natural materials is a key issue for obtaining advanced materials with high added value. We report the fabrication of aligned CNT arrays on fibrous natural wollastonite. Strongly dispersed iron particles with small sizes were produced on a planar surface of soaked fibrous wollastonite by a reduction process. These particles then catalyzed the decomposition of ethylene, leading to the synchronous growth of CNTs to form leaf- and brush-like wollastonite/CNT hybrids. The as-obtained hybrids could be further transformed into porous SiO(2)/CNT hybrids by reaction with hydrochloric acid. Further treatment with hydrofluoric acid resulted in aligned CNT arrays, with purities as high as 98.7 %. The presented work is very promising for the fabrication of advanced materials with unique structures and properties that can be used as fillers, catalyst supports, or energy-absorbing materials.
在天然材料上生长碳纳米管(CNTs)是一种低成本、环境友好且节省材料的大规模生产 CNTs 的方法。直接在天然材料上构建 3D CNT 结构是获得具有高附加值的先进材料的关键问题。我们报告了在纤维状天然硅灰石上制备定向 CNT 阵列。通过还原过程,在浸泡过的纤维状硅灰石的平面上产生了分散性强且粒径小的铁颗粒。这些颗粒随后催化了乙烯的分解,导致 CNT 同步生长,形成了叶状和刷状硅灰石/CNT 杂化物。通过与盐酸反应,所获得的杂化物可以进一步转化为多孔 SiO(2)/CNT 杂化物。进一步用氢氟酸处理得到了纯度高达 98.7%的定向 CNT 阵列。这项工作对于制造具有独特结构和性能的先进材料非常有前途,这些材料可用作填充剂、催化剂载体或吸能材料。