TY - CHAP
T1 - Amorphous silicon nanotubes
AU - Inguanta, Rosalinda
AU - Piazza, Salvatore
AU - Sunseri, Carmelo
AU - Battaglia, Mirko
PY - 2017
Y1 - 2017
N2 - In the following, the attention will be focused on the silicon nanotube (SiNTs) that is a highly desired form of silicon for its fundamental role in the miniaturization trend of the electronic devices. After a description of the properties and applications of SiNTs and their fabrication methods, the attention will be focused on chemical vapour deposition (CVD) template synthesis that is the most usual synthetic method for this material. Then, galvanic template synthesis will be described as a general method for the fabrication of different metals and oxides nanostructures, therefore the use of this technique for synthesizing SiNTs will be detailed. Characterization methods will be also described, confirming that the template galvanic synthesis is a valuable tool for fabricating SiNTs because it has be found to be a very simple and cheap route in comparison with the other techniques. In addition, it is an easy scalable process that is the major advantage in light of industrial production.
AB - In the following, the attention will be focused on the silicon nanotube (SiNTs) that is a highly desired form of silicon for its fundamental role in the miniaturization trend of the electronic devices. After a description of the properties and applications of SiNTs and their fabrication methods, the attention will be focused on chemical vapour deposition (CVD) template synthesis that is the most usual synthetic method for this material. Then, galvanic template synthesis will be described as a general method for the fabrication of different metals and oxides nanostructures, therefore the use of this technique for synthesizing SiNTs will be detailed. Characterization methods will be also described, confirming that the template galvanic synthesis is a valuable tool for fabricating SiNTs because it has be found to be a very simple and cheap route in comparison with the other techniques. In addition, it is an easy scalable process that is the major advantage in light of industrial production.
KW - galvanic template synthesis
KW - photoelectrochemistry
KW - silicon nanotube
KW - galvanic template synthesis
KW - photoelectrochemistry
KW - silicon nanotube
UR - http://hdl.handle.net/10447/256004
UR - https://www.taylorfrancis.com/books/9781498763875/chapters/C2015-0-76660-3-33
M3 - Chapter
SN - 9781498763776
SP - 565
EP - 589
BT - Silicon nanomaterials sourcebook, Volume I, Low-dimensional Structures, Quantum Dots, and nanowire
ER -