Kobiro Kazuya, Kimura Hinako, Hirose Saki, Kinjo Makoto, Furuta Hiroshi
Graduate School of Engineering, Kochi University of Technology 185 Miyanokuchi, Tosayamada Kochi 782-8502 Japan
Center for Structural Nanochemistry, Research Institute, Kochi University of Technology 185 Miyanokuchi, Tosayamada Kochi 782-8502 Japan.
RSC Adv. 2023 May 5;13(20):13809-13818. doi: 10.1039/d3ra00770g. eCollection 2023 May 2.
Long- and uniform-length, and high-density hair-like carbon nanotubes (CNTs) were produced by CNT growth on sub-micron-sized spherical catalyst supports. The nanosized catalysts (FeO , CoO , and NiO ) that were supported in/on the sub-micron-sized spherical metal oxides (TiO, ZrO, SnO, and CeO) were prepared one-step solvothermal and/or two-step impregnation methods. The nanosized catalysts supported in/on the spherical metal oxide supports were converted into CNT conjugates with the CNT-hair morphology a chemical thermal vapor deposition technique using ethyne gas as a carbon source; the CNTs grew on the central spherical metal oxide core under the base growth process conditions. Among the many types of candidate spherical catalyst materials, the combination of FeO as a catalyst for CNT growth and ZrO as a support led to the best growth of CNT-hair under the reaction conditions, which included a temperature of 730 °C, pressure of 65 Pa, a 10 sccm ethyne gas flow, and a reaction time of 10 s. The CNTs consisted of five-to-eight-layered multi-wall structures with lengths of approximately 3 μm. The CNT-hair that was obtained using the solvothermally embedded catalyst showed higher crystallinity and was dense, thick, and straight, while the corresponding CNT-hair obtained using the impregnated catalyst was slightly sparse, thin, and curly. A unique layer structure constructed using large quantities of uniform CNT-hair, including multiple CNT yarns similar to fuzzy balls or cotton candies, was assembled. The CNT-hair conjugate, specifically constructed in a layer structure with core FeO /ZrO catalysts and tangled CNT yarns, had an appearance similar to frog eggs. Therefore, we successfully prepared suitable catalysts for CNT-hair production and fabricated a layer structure consisting of large numbers of CNT-hair conjugates. The unique structures are expected as a new metamaterial with intriguing physical properties, including isotropic absorption of polarized light and electromagnetic waves.
通过在亚微米级球形催化剂载体上生长碳纳米管(CNT),制备出了长且长度均匀、高密度的毛发状碳纳米管。负载于亚微米级球形金属氧化物(TiO、ZrO、SnO和CeO)内部或表面的纳米级催化剂(FeO 、CoO 和NiO )采用一步溶剂热法和/或两步浸渍法制备。采用化学气相沉积技术,以乙炔气体作为碳源,将负载于球形金属氧化物载体内部或表面的纳米级催化剂转化为具有CNT毛发形态的CNT共轭物;在基本生长工艺条件下,CNT在中央球形金属氧化物核上生长。在众多候选球形催化剂材料中,作为CNT生长催化剂的FeO 与作为载体的ZrO 的组合,在包括730℃温度、65Pa压力、10sccm乙炔气体流量和10s反应时间的反应条件下,实现了CNT毛发的最佳生长。这些CNT由五到八层的多层结构组成,长度约为3μm。使用溶剂热法嵌入催化剂获得的CNT毛发具有更高的结晶度,且致密、粗壮且笔直,而使用浸渍催化剂获得的相应CNT毛发则略显稀疏、纤细且卷曲。利用大量均匀的CNT毛发构建了一种独特的层状结构,其中包括多个类似于毛球或棉花糖的CNT纱线。特别是由核心FeO /ZrO催化剂和缠结的CNT纱线构成层状结构的CNT毛发共轭物,其外观类似于蛙卵。因此,我们成功制备了适用于生产CNT毛发的催化剂,并制造了由大量CNT毛发共轭物组成的层状结构。这些独特的结构有望成为一种具有引人入胜的物理特性的新型超材料,包括对偏振光和电磁波的各向同性吸收。