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Optimisation of stability and charge transferability of ferrocene-encapsulated carbon nanotubes
Authors:Pongthep Prajongtat  Suwannee Sriyab  Thomas Zentgraf  Supa Hannongbua
Affiliation:1. Department of Materials Science, Faculty of Science, Kasetsart University, Bangkok, Thailand;2. Department of Chemistry, Faculty of Science, Kasetsart University, Bangkok, Thailand;3. Department of Physics, Faculty of Science, University of Paderborn, Paderborn, Germany;4. Center for Advanced Studies in Nanotechnology for Chemical, Food and Agricultural Industries, KU Institute for Advanced Studies, Kasetsart University, Bangkok, Thailand;5. NANOTEC Center of Excellence for Nanoscale Materials Design for Green Nanotechnology, Kasetsart University, Bangkok, Thailand
Abstract:Ferrocene-encapsulated carbon nanotubes (Fc@CNTs) became promising nanocomposite materials for a wide range of applications due to their superior catalytic, mechanical and electronic properties. To open up new windows of applications, the highly stable and charge transferable encapsulation complexes are required. In this work, we designed the new encapsulation complexes formed from ferrocene derivatives (FcR, where R = –CHO, –CH2OH, –CON3 and -PCl2) and single-walled carbon nanotubes (SWCNTs). The influence of diameter and chirality of the nanotubes on the stability, charge transferability and electronic properties of such complexes has been investigated using density functional theory. The calculations suggest that the encapsulation stability and charge transferability of the encapsulation complexes depend on the size and chirality of the nanotubes. FcR@SWCNTs are more stable than Fc@SWCNTs at the optimum tube diameter. The greatest charge transfer was observed for FcCH2OH@SWCNTs and Fc@SWCNTs since the Fe d levels of FcCH2OH and Fc are nearly equal and close to the Fermi energy level of the nanotubes. The obtained results pave the way to the design of new encapsulated ferrocene derivatives which can give rise to higher stability and charge transferability of the encapsulation complexes.
Keywords:Carbon nanotube  encapsulation  ferrocene  charge transfer  density functional theory
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