TY - JOUR
T1 - Electronic transport properties of ultra-thin Ni and Ni-C nanowires
AU - Zhang, Leining
AU - Wu, Weikang
AU - Zhou, Yi
AU - Ren, Hongru
AU - Dong, Jichen
AU - Li, Hui
PY - 2016
Y1 - 2016
N2 - The structures and electronic transport properties of ultra-thin Ni and Ni-C nanowires obtained from carbon nanotube (CNT) templates are theoretically investigated. C atoms tend to locate at the central positions of nanowires and are surrounded by Ni atoms. Spin polarization at the Fermi level is not responsible for the spin filtration of these nanowires. Increasing C concentration can improve the resistance of nanowires by abating the number of electronic transmission channels and the coupling of electron orbitals between Ni atoms. Moreover, with the increase of diameter, the conductance of these nanowires increases as well. This study is helpful for guiding the synthesis of nanowires with desired applications.
AB - The structures and electronic transport properties of ultra-thin Ni and Ni-C nanowires obtained from carbon nanotube (CNT) templates are theoretically investigated. C atoms tend to locate at the central positions of nanowires and are surrounded by Ni atoms. Spin polarization at the Fermi level is not responsible for the spin filtration of these nanowires. Increasing C concentration can improve the resistance of nanowires by abating the number of electronic transmission channels and the coupling of electron orbitals between Ni atoms. Moreover, with the increase of diameter, the conductance of these nanowires increases as well. This study is helpful for guiding the synthesis of nanowires with desired applications.
UR - http://www.scopus.com/inward/record.url?scp=84958186115&partnerID=8YFLogxK
UR - https://www.scopus.com/record/pubmetrics.uri?eid=2-s2.0-84958186115&origin=recordpage
U2 - 10.1039/c5cp07641b
DO - 10.1039/c5cp07641b
M3 - RGC 21 - Publication in refereed journal
SN - 1463-9076
VL - 18
SP - 5336
EP - 5343
JO - Physical Chemistry Chemical Physics
JF - Physical Chemistry Chemical Physics
IS - 7
ER -