342
R. R. Deshmukh et al.
Table 2 Survey on battery electrodes of different 1-D nanostructures of various materials and their
performance
S.
no.
1-D nanostructures Electrode materials
Reversible
capacity
(mAh −1
g −1 )
Synthesis
method
Ref. no.
1
Nanorod/nanopillar Si-NRs
1038
MR
Chen et al.
(2018)
SnO 2
580
HT
Liu et al.
(2009)
TiO 2
31.44
HT
Zhang et al.
(2015)
Al-doped
LiMn 2 O 4 /LiMn 2 O 4
NA
HT
Yang et al.
(2009)
2
Nanowire (NW)
Si-NSi-NWs
3124
VLS
Chan (2008)
Hybrid nanostructural
VO 2
1000
HT
Mai et al.
(2013)
Porous Si-NWs
2000
DE
Ge et al.
(2012)
Li 2 MnO 3
1279
HT
Wang et al.
(2014)
3
Nanotube (NT)
MWCNTs
950
CVD
Wang et al.
(2006)
SWCNTs
700
CVD
Shimoda
et al. (2002)
Si-NTs
2700
HT@CVD Song et al.
(2010)
TiO 2
182
EA
Liu et al.
(2008)
4
Core/shell
α-Fe 2 O 3 @ Li 4 Ti 5 O 12 249.3
HT
Chen et al.
(2014)
Ti@Si
1125
HT
Meng and
Deng (2015)
5
Hierarchically
Ni/NiO/MnO x /Carbon 1360
ES
Bhaway
et al. (2016)
NH 4 VO 3
390
HT@ ES
Mai et al.
(2010)
4.1 Nanowires for ESS
One-dimensional nanowires have been studied as energy storage electrode materials due to large surface area to store charges and an efficient pathway to transport
charges. Silicon-NWs (Si-NWs) on stainless steel substrate exhibited a very high initial discharge capacity (3124 mAh g
−1 ) and reasonable coulombic efficiency (73%)
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