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Hierarchical chrysanthemum-flower-like carbon nanomaterials grown by chemical vapor deposition

机译:化学气相沉积法生长的菊花状花状碳纳米材料

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Novel hierarchical chrysanthemum-flower-like carbon nanomaterials (CFL-CNMs) were synthesized by thermal chemical vapor deposition based on acetylene decomposition. A scanning electron microscope and a transmission electron microscope were employed to observe the morphology and structure of the unconventional nanostructures. It is found that the CFL-CNMs look like a blooming chrysanthemum with a stem rather than a spherical flower. The carbon flower has an average diameter of 5 mu m, an average stem diameter of 150 nm, branch diameters ranging from 20 to 70 nm, and branch lengths ranging from 0.5 to 3 mu m. The morphologies of the CFL-CNMs are unlike any of those previously reported. Fishbone-like carbon nanofibers with a spindle-shaped catalyst locating at the tip can also be found. Furthermore, the catalyst split was proposed to elucidate the formation mechanism of CFL-CNMs. A large and glomerate catalyst particle at the tip of the carbon nanofiber splits into smaller catalyst particles which are catalytic-active points for branch formation, resulting in the formation of CFL-CNMs.
机译:通过基于乙炔分解的热化学气相沉积法合成了新型的菊花状碳纳米材料(CFL-CNMs)。使用扫描电子显微镜和透射电子显微镜观察非常规纳米结构的形态和结构。结果发现,CFL-CNM看起来像是一朵盛开的菊花,带有茎而不是球形花。碳花的平均直径为5μm,平均茎干直径为150nm,分支直径为20至70nm,分支长度为0.5至3μm。 CFL-CNM的形态不同于先前报道的任何形态。还可以发现鱼骨状碳纳米纤维,其纺锤形催化剂位于尖端。此外,提出了裂解催化剂以阐明CFL-CNMs的形成机理。碳纳米纤维尖端的大而团聚的催化剂颗粒分裂成较小的催化剂颗粒,这些催化剂颗粒是分支形成的催化活性点,导致CFL-CNM的形成。

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