1 3
Topics in Current Chemistry (2018) 376:42
Table 5 Comparison of electro-catalytic performance of recent advanced Ni-based electro-catalysts
derived from CVs in basic medium
Anodic catalysts
Electrolytes
Current
density
(mA cm
−2 )
Peak potential and
OOP (V vs. Hg/
HgO)
Refs.
Ni nanoparticles
0.33 M urea + 5 M KOH
29
0.52/0.42
[71]
Ni nanowires
0.33 M urea + 1 M KOH
95
0.65/0.50
[79]
Ni nanowires
0.33 M urea + 5 M KOH
160
0.52/0.27
[75]
Ru–Ni
0.33 M urea + 1 M KOH
72
0.70/0.45
[80]
Rh–Ni
0.33 M urea + 1 M KOH
82
0.70/0.45
[80]
Ni–Co nanowires/Ti
0.33 M urea + 1 M KOH
55
0.60/0.39
[82]
Ni x Co y nanowires
0.33 M urea + 5 M KOH
170 (10:0)
0.60/0.25
[53]
380 (9:1)
0.60/0.19
[53]
180 (7:3)
0.60/0.12
[53]
165 (5:5)
0.60/0.16
[53]
Ni–Zn
0.33 M urea + 5 M KOH
67
0.52/0.39
[83]
Ni–Zn–Co
0.33 M urea + 5 M KOH
24
0.50/0.35
[83]
C–NiFe core shell/NF
0.33 M urea + 1 M KOH
100
0.60/0.27
[84]
NiMn nanoparticle/CNFs
1.00 M urea + 1 M KOH
300 (mg
−1 )
0.50/0.29
[85]
Ni 60 Cr 40 /C
0.33 M urea + 1 M KOH
90
0.55/0.34
[86]
Ni 2 Mo 1 nanoparticle/graphene 0.33 M urea + 1 M KOH
128
0.52/0.39
[87]
α-Ni(OH) 2
0.33 M urea + 5 M KOH
154 (mg
−1 )
0.55/0.32
[91]
β-Ni(OH) 2
0.33 M urea + 5 M KOH
7 (mg
−1 )
0.55/0.45
[92]
Ni(OH) 2 nanotube
0.33 M urea + 1 M KOH
100 (mg
−1 )
0.60/0.29
[93]
Sheet-like Ni(OH) 2 /Ni foam
0.60 M urea + 5 M KOH
92
0.56/0.25
[95]
Twine-like Ni(OH) 2 /Ni foam
178
0.56/0.24
[95]
Flower-like Ni(OH) 2 /Ni foam
375
0.56/0.23
[95]
Nano-sheet Ni(OH) 2 /Ni foam
559
0.56/0.21
[95]
Ni 57 Co 43 (OH) 2
0.33 M urea + 5 M KOH
47
0.60/0.25
[96]
S-Ni(OH) 2 nanosheets
0.33 M urea + 1 M KOH
35
0.52/0.32
[90]
NiO nanosheets/Ni foam
0.33 M urea + 1 M KOH
400 (mg
−1 )
0.50/0.27
[98]
NiCo 2 O 4
0.33 M urea + 1 M KOH
135
0.70/0.35
[103]
Ni 1.5 Mn 1.5 O 4
0.33 M urea + 1 M KOH
6.9
0.50/0.29
[104]
Ni–Co–Mn–O core shell
0.05 M urea + 0.1 M KOH 34
0.50/0.25
[44]
NiMoO 4 ·xH 2 O nanosheets
0.33 M urea + 1 M KOH
830 (mg
−1 )
0.50/0.28
[88]
Ni 5 Sm-P/C
0.33 M urea + 5 M KOH
327 (mg
−1 )
0.46/0.32
[112]
Ni 2 P nanoflower/Ni foam
0.33 M urea + 5 M KOH
490
0.50/0.24
[113]
Ni 2 P nanoflake/carbon cloth
0.50 M urea + 1 M KOH
110
0.45/0.28
[114]
NiCoP nanosheet/carbon cloth 0.50 M urea + 1 M KOH
50
0.45/0.24
[115]
NiMoS coral-like/Ti mesh
0.50 M urea + 1 M KOH
260
0.40/0.30
[117]
Se-Ni(OH) 2 -NiSe nanowires
0.33 M urea + 1 M KOH
230
0.45/0.28
[118]
NiSe nanowires
0.33 M urea + 1 M KOH
185
0.45/0.28
[118]
NiSe nanoparticles
0.33 M urea + 1 M KOH
155
0.45/0.28
[118]
Ni nanoparticle/graphene
0.50 M urea + 1 M KOH
93
0.60/0.32
[123]
α-Ni(OH) 2 @MWCNT
0.33 M urea + 1 M KOH
1300(mg
−1 )
0.55/0.42
[122]
Reprinted from the journal
71
Topics in Current Chemistry (2018) 376:42
Table 5 Comparison of electro-catalytic performance of recent advanced Ni-based electro-catalysts
derived from CVs in basic medium
Anodic catalysts
Electrolytes
Current
density
(mA cm
−2 )
Peak potential and
OOP (V vs. Hg/
HgO)
Refs.
Ni nanoparticles
0.33 M urea + 5 M KOH
29
0.52/0.42
[71]
Ni nanowires
0.33 M urea + 1 M KOH
95
0.65/0.50
[79]
Ni nanowires
0.33 M urea + 5 M KOH
160
0.52/0.27
[75]
Ru–Ni
0.33 M urea + 1 M KOH
72
0.70/0.45
[80]
Rh–Ni
0.33 M urea + 1 M KOH
82
0.70/0.45
[80]
Ni–Co nanowires/Ti
0.33 M urea + 1 M KOH
55
0.60/0.39
[82]
Ni x Co y nanowires
0.33 M urea + 5 M KOH
170 (10:0)
0.60/0.25
[53]
380 (9:1)
0.60/0.19
[53]
180 (7:3)
0.60/0.12
[53]
165 (5:5)
0.60/0.16
[53]
Ni–Zn
0.33 M urea + 5 M KOH
67
0.52/0.39
[83]
Ni–Zn–Co
0.33 M urea + 5 M KOH
24
0.50/0.35
[83]
C–NiFe core shell/NF
0.33 M urea + 1 M KOH
100
0.60/0.27
[84]
NiMn nanoparticle/CNFs
1.00 M urea + 1 M KOH
300 (mg
−1 )
0.50/0.29
[85]
Ni 60 Cr 40 /C
0.33 M urea + 1 M KOH
90
0.55/0.34
[86]
Ni 2 Mo 1 nanoparticle/graphene 0.33 M urea + 1 M KOH
128
0.52/0.39
[87]
α-Ni(OH) 2
0.33 M urea + 5 M KOH
154 (mg
−1 )
0.55/0.32
[91]
β-Ni(OH) 2
0.33 M urea + 5 M KOH
7 (mg
−1 )
0.55/0.45
[92]
Ni(OH) 2 nanotube
0.33 M urea + 1 M KOH
100 (mg
−1 )
0.60/0.29
[93]
Sheet-like Ni(OH) 2 /Ni foam
0.60 M urea + 5 M KOH
92
0.56/0.25
[95]
Twine-like Ni(OH) 2 /Ni foam
178
0.56/0.24
[95]
Flower-like Ni(OH) 2 /Ni foam
375
0.56/0.23
[95]
Nano-sheet Ni(OH) 2 /Ni foam
559
0.56/0.21
[95]
Ni 57 Co 43 (OH) 2
0.33 M urea + 5 M KOH
47
0.60/0.25
[96]
S-Ni(OH) 2 nanosheets
0.33 M urea + 1 M KOH
35
0.52/0.32
[90]
NiO nanosheets/Ni foam
0.33 M urea + 1 M KOH
400 (mg
−1 )
0.50/0.27
[98]
NiCo 2 O 4
0.33 M urea + 1 M KOH
135
0.70/0.35
[103]
Ni 1.5 Mn 1.5 O 4
0.33 M urea + 1 M KOH
6.9
0.50/0.29
[104]
Ni–Co–Mn–O core shell
0.05 M urea + 0.1 M KOH 34
0.50/0.25
[44]
NiMoO 4 ·xH 2 O nanosheets
0.33 M urea + 1 M KOH
830 (mg
−1 )
0.50/0.28
[88]
Ni 5 Sm-P/C
0.33 M urea + 5 M KOH
327 (mg
−1 )
0.46/0.32
[112]
Ni 2 P nanoflower/Ni foam
0.33 M urea + 5 M KOH
490
0.50/0.24
[113]
Ni 2 P nanoflake/carbon cloth
0.50 M urea + 1 M KOH
110
0.45/0.28
[114]
NiCoP nanosheet/carbon cloth 0.50 M urea + 1 M KOH
50
0.45/0.24
[115]
NiMoS coral-like/Ti mesh
0.50 M urea + 1 M KOH
260
0.40/0.30
[117]
Se-Ni(OH) 2 -NiSe nanowires
0.33 M urea + 1 M KOH
230
0.45/0.28
[118]
NiSe nanowires
0.33 M urea + 1 M KOH
185
0.45/0.28
[118]
NiSe nanoparticles
0.33 M urea + 1 M KOH
155
0.45/0.28
[118]
Ni nanoparticle/graphene
0.50 M urea + 1 M KOH
93
0.60/0.32
[123]
α-Ni(OH) 2 @MWCNT
0.33 M urea + 1 M KOH
1300(mg
−1 )
0.55/0.42
[122]
Reprinted from the journal
71
