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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Synthesis of helical carbon nanotubes, worm-like carbon nanotubes and nanocoils at 450 ℃ and their magnetic properties
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Synthesis of helical carbon nanotubes, worm-like carbon nanotubes and nanocoils at 450 ℃ and their magnetic properties

机译:螺旋碳纳米管,蠕虫状碳纳米管和纳米线圈在450℃下的合成及其磁性

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摘要

High purity (99.21 wt.%) helical carbon nanotubes (HCNTs) were synthesized in large quantity over Fe nanoparticles (fabricated using a coprecipitation/hydrogen reduction method) by acetylene decomposition at 450 °C. Field-emission and transmission electron microscope images reveal that the selectivity to HCNTs (with two or three coiled nanotubes connected to a catalyst nanoparticle) is up to ca. 93%. The yield of HCNTs (as denned by the equation: yield = m_(total)-m_(catalyst)/m_(catalyst) x 100%) is ca. 7474% in a run of 6 h, higher than any of thosereported in the literature. If hydrogen was introduced during acetylene decomposition for ca. 30 min, the HCNTs mainly consisted of two coiled tubes connected to a catalyst nanoparticle, and carbon nanocoils (CNCs) of different structures were generated. If hydrogen was present throughout acetylene decomposition, worm-like carbon nanotubes (CNTs) as well as CNCs were produced in large quantities. Because the HCNTs and worm-like CNTs are attached to Fe nanoparticles, the nanomaterials are high in magnetization.
机译:通过在450°C下乙炔分解,在Fe纳米颗粒(使用共沉淀/氢还原法制得)上大量合成了高纯度(99.21 wt。%)的螺旋状碳纳米管(HCNT)。场发射和透射电子显微镜图像显示,对HCNT(两个或三个盘绕的纳米管连接到催化剂纳米颗粒)的选择性高达约。 93%。 HCNT的产率(由等式所限定:产率= m_(总)-m_(催化剂)/ m_(催化剂)×100%)。在6小时内运行了7474%,高于文献中的任何报告。如果在乙炔分解过程中引入氢约30分钟后,HCNT主要由连接到催化剂纳米颗粒的两个螺旋管组成,并生成了不同结构的碳纳米线圈(CNC)。如果在乙炔分解过程中存在氢,则会大量生产蠕虫状碳纳米管(CNT)和CNC。因为HCNT和蠕虫状CNT附着在Fe纳米颗粒上,所以纳米材料的磁化强度高。

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