Title :
Fabrication of metal nanoparticles from metal-filled carbon nanofibers and their size control by heating
Author :
Tokunaga, Tomochika ; Kanematsu, T. ; Ota, Takahisa ; Sasaki, Kazuhiko ; Yamamoto, Takayuki ; Hayashi, Yasuhiro
Author_Institution :
Quantum Enginnering, Nagoya Univ., Nagoya, Japan
Abstract :
In situ environmental transmission electron microscopy (ETEM) observation was used to reveal Sn inside Sn-filled carbon nanofibers (CNFs) during heating. Before and during heating, the Sn was covered completely by CNFs. The volume of Sn present in the Sn-filled CNFs gradually decreased during heating, with new Sn particles appearing at the top of the Sn-filled CNFs. It is thought that Sn diffused out of the Sn-filled CNFs and into the carbon wall of the metal-filled CNFs (MFCNFs). The specific surface area at the top of Sn-filled CNFs is higher specific surface than that at other parts and the temperature at the top of the MFCNF is lower than that at other parts; therefore, diffused Sn particles were formed at only the top of the Sn-filled CNF. Fabrication of Sn metal particles was tried by heating the Sn-filled CNFs, and it was clear that the metal particle size could be controlled by controlling the heating time.
Keywords :
carbon fibres; diffusion; heat treatment; nanofabrication; nanofibres; nanoparticles; particle size; size control; tin; transmission electron microscopy; C-Sn; diffusion; in situ environmental transmission electron microscopy; metal nanoparticles; metal-filled carbon nanofibers; particle size; size control; surface area; Carbon; Chemicals; Heating; Nanoscale devices; Plasmas; Tin;
Conference_Titel :
Nanotechnology Materials and Devices Conference (NMDC), 2013 IEEE 8th
Conference_Location :
Tainan
Print_ISBN :
978-1-4799-3386-0
DOI :
10.1109/NMDC.2013.6707468