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Research paper published in Science and Technology of Advanced Materials, 2015, Volume 16, Issue 1.
A M Saleem, S Shafiee, T Krasia-Christoforou, I Savva, G Göransson, V Desmaris, P Enoksson • February 25, 2015
One-dimenÂsionÂal carÂbon nanosÂtrucÂtures have been known and fabÂriÂcatÂed for more than a hunÂdred years and were origÂiÂnalÂly rWe describe a fast and cost-effecÂtive process for the growth of carÂbon nanofibers (CNFs) at a temÂperÂaÂture comÂpatÂiÂble with comÂpleÂmenÂtary metÂal oxide semiÂconÂducÂtor techÂnolÂoÂgy, using highÂly staÂble polymer–Pd nanohyÂbrid colÂloidal soluÂtions of palÂlaÂdiÂum catÂaÂlyst nanoparÂtiÂcles (NPs). Two polymer–Pd nanohyÂbrids, nameÂly poly(lauryl methacrylate)-block-poly(2‑acetoacetoxy)ethyl methacrylate)/Pd (LauÂMAx-b-AEMAy/Pd) and polyvinylpyrrolidone/​Pd were preÂpared in organÂic solÂvents and spin-coatÂed onto silÂiÂcon subÂstrates. SubÂseÂquentÂly, verÂtiÂcalÂly aligned CNFs were grown on these NPs by plasÂma enhanced chemÂiÂcal vapor depoÂsiÂtion at difÂferÂent temÂperÂaÂtures. The elecÂtriÂcal propÂerÂties of the grown CNFs were evalÂuÂatÂed using an elecÂtroÂchemÂiÂcal method, comÂmonÂly used for the charÂacÂterÂiÂzaÂtion of superÂcaÂpacÂiÂtors. The results show that the polymer–Pd nanohyÂbrid soluÂtions offer the optiÂmum size range of palÂlaÂdiÂum catÂaÂlyst NPs enabling the growth of CNFs at temÂperÂaÂtures as low as 350 °C. FurÂtherÂmore, the CNFs grown at such a low temÂperÂaÂture are verÂtiÂcalÂly aligned simÂiÂlar to the CNFs grown at 550 °C. FinalÂly the capacÂiÂtive behavÂior of these CNFs was simÂiÂlar to that of the CNFs grown at high temÂperÂaÂture assurÂing the same elecÂtriÂcal propÂerÂties thus enabling their usage in difÂferÂent appliÂcaÂtions such as on-chip capacÂiÂtors, interÂconÂnects, therÂmal heat sink and enerÂgy storÂage solutions.
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