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A structure and activity relationship for single-walled carbon nanotube growth confirmed by in situ observations and modeling

机译:结构和活动的关系单壁碳纳米管生长证实了原位观察和建模

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The structure and phase transformation of a cobalt (Co) catalyst, during single walled carbon nanotube (SWCNT) growth, is elucidated for inactive, active and deactivated nanoparticles by in situ imaging using an environmental transmission electron microscope. During nanotube growth, the structure was analyzed using Miller indices to determine the types of planes that favor anchoring or liftoff of nanotubes from the Co catalyst. Density functional theory was further applied to model the catalyst interactions to compare the work of adhesion of the catalyst's faceted planes to understand the interactions of different Miller planes with the graphene structure. Through in-depth studies of multiple distinct Co nanoparticles, we established a dominant nanoparticle phase for SWCNT growth. In addition, we identified the preferred lattice planes and a threshold for work of adhesion to allow the anchoring and liftoff of SWCNTs.
机译:的结构和相变钴(Co)催化剂,在单壁碳纳米管(SWCNT)增长,是阐明不活跃,活跃和释放纳米颗粒使用环境原位成像透射电子显微镜。使用米勒增长、结构进行了分析指标来确定类型的飞机锚定或纳米管的发射公司催化剂。进一步应用于模型催化剂交互比较粘附的工作催化剂的面飞机来理解米勒的相互作用不同飞机的石墨烯结构。多个不同的纳米粒子,我们建立了一个占主导地位的纳米颗粒相SWCNT增长。首选晶格飞机和一个阈值工作粘附的允许的锚固和发射SWCNTs。

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