The data below tabulates standard electrode potentials (E°), in volts relative to the standard hydrogen electrode (SHE), at:

Variations from these ideal conditions affect measured voltage via the Nernst equation.

Electrode potentials of successive elementary half-reactions cannot be directly added. However, the corresponding Gibbs free energy changes (∆G°) can be added. Those free energy changes satisfy

G° = –zFE°,

where z electrons are transferred, and the Faraday constant F is the conversion factor describing Coulombs transferred per mole electrons. For example, from

Fe2+ + 2e− ⇌ Fe(s) (−0.44 V),

the energy to form one neutral atom of Fe(s) from one Fe2+ ion and two electrons is 2 × 0.44 eV = 0.88 eV, or 84 907 J/(mol e−). That value is also the standard formation energy (∆Gf°) for an Fe2+ ion, since e− and Fe(s) both have zero formation energy.

Data from different sources may cause table inconsistencies. For example: Cu + + e − ⇌ Cu ( s ) E 1 = + 0.520 V Cu 2 + + 2 e − ⇌ Cu ( s ) E 2 = + 0.337 V Cu 2 + + e − ⇌ Cu + E 3 = + 0.159 V {\displaystyle {\begin{alignedat}{4}&{\ce {Cu+ + e-}}&{}\rightleftharpoons {}&{\ce {Cu(s)}}&\quad \quad E_{1}=+0.520{\text{ V}}\\&{\ce {Cu^2+ + 2e-}}&{}\rightleftharpoons {}&{\ce {Cu(s)}}&\quad \quad E_{2}=+0.337{\text{ V}}\\&{\ce {Cu^2+ + e-}}&{}\rightleftharpoons {}&{\ce {Cu+}}&\quad \quad E_{3}=+0.159{\text{ V}}\end{alignedat}}} From additivity of Gibbs energies and canceling common factors, one must have 2 ⋅ E 2 = 1 ⋅ E 1 + 1 ⋅ E 3 {\displaystyle 2\cdot E_{2}=1\cdot E_{1}+1\cdot E_{3}} But that equation does not hold exactly with the cited values.

Table of standard electrode potentials

Legend: (s) – solid; (l) – liquid; (g) – gas; (aq) – aqueous (default for all charged species); (Hg) – amalgam; bold – water electrolysis equations.

ElementHalf-reaction (volt)Electrons transferredReference
OxidantReductant
SrSr+ + eSr(s)−4.1011
CaCa+ + eCa(s)−3.81
ThTh4+ + eTh3+−3.61
PrPr3+ + ePr2+−3.11Estimated
N3N2(g) + 2H+ + 2e2HN3(aq)−3.092
LiLi+ + eLi(s)−3.04011
NN2(g) + 4H2O + 2e2NH2OH(aq) + 2OH−−3.042
CsCs+ + eCs(s)−3.0261
CaCa(OH)2 + 2eCa(s) + 2OH−−3.022
ErEr3+ + eEr2+−31
BaBa(OH)2 + 2eBa(s) + 2OH−−2.992
RbRb+ + eRb(s)−2.981
KK+ + eK(s)−2.9311
BaBa2+ + 2eBa(s)−2.9122
LaLa(OH)3(s) + 3eLa(s) + 3OH−−2.93
FrFr+ + eFr(s)−2.91
SrSr2+ + 2eSr(s)−2.8992
SrSr(OH)2 + 2eSr(s) + 2OH−−2.882
CaCa2+ + 2eCa(s)−2.8682
LiLi+ + C6(s) + eLiC6(s)−2.841
EuEu2+ + 2eEu(s)−2.8122
RaRa2+ + 2eRa(s)−2.82
HoHo3+ + eHo2+−2.81
BkBk3+ + eBk2+−2.81
YbYb2+ + 2eYb(s)−2.762
NaNa+ + eNa(s)−2.711
MgMg+ + eMg(s)−2.71
NdNd3+ + eNd2+−2.71
MgMg(OH)2 + 2eMg(s) + 2OH−−2.692
SmSm2+ + 2eSm(s)−2.682
BeBe2O2− 3 + 3H2O + 4e2Be(s) + 6OH−−2.634
PmPm3+ + ePm2+−2.61
DyDy3+ + eDy2+−2.61
NoNo2+ + 2eNo−2.52
HfHfO(OH)2 + H2O + 4eHf(s) + 4OH−−2.54
ThTh(OH)4 + 4eTh(s) + 4OH−−2.484
MdMd2+ + 2eMd−2.42
TmTm2+ + 2eTm(s)−2.42
LaLa3+ + 3eLa(s)−2.3793
YY3+ + 3eY(s)−2.3723
MgMg2+ + 2eMg(s)−2.3722
ScScF3(aq) + 3H+ + 3eSc(s) + 3HF(aq)−2.373
ZrZrO(OH)2(s) + H2O + 4eZr(s) + 4OH−−2.364
PrPr3+ + 3ePr(s)−2.3533
CeCe3+ + 3eCe(s)−2.3363
ErEr3+ + 3eEr(s)−2.3313
HoHo3+ + 3eHo(s)−2.333
AlH2AlO− 3 + H2O + 3eAl(s) + 4OH−−2.333
NdNd3+ + 3eNd(s)−2.3233
TmTm3+ + 3eTm(s)−2.3193
AlAl(OH)3(s) + 3eAl(s) + 3OH−−2.313
SmSm3+ + 3eSm(s)−2.3043
FmFm2+ + 2eFm−2.32
AmAm3+ + eAm2+−2.31
DyDy3+ + 3eDy(s)−2.2953
LuLu3+ + 3eLu(s)−2.283
ScScF+ 2 + 2H+ + 3eSc(s) + 2HF(l)−2.283
TbTb3+ + 3eTb(s)−2.283
GdGd3+ + 3eGd(s)−2.2793
HH2(g) + 2e2H−−2.232
EsEs2+ + 2eEs(s)−2.232
PmPm2+ + 2ePm(s)−2.22
TmTm3+ + eTm2+−2.21
DyDy2+ + 2eDy(s)−2.22
AcAc3+ + 3eAc(s)−2.23
YbYb3+ + 3eYb(s)−2.193
CfCf2+ + 2eCf(s)−2.122
NdNd2+ + 2eNd(s)−2.12
HoHo2+ + 2eHo(s)−2.12
ScSc3+ + 3eSc(s)−2.0773
AlAlF3− 6 + 3eAl(s) + 6F−−2.0693
CmCm3+ + 3eCm(s)−2.043
PuPu3+ + 3ePu(s)−2.0313
PrPr2+ + 2ePr(s)−22
ErEr2+ + 2eEr(s)−22
EuEu3+ + 3eEu(s)−1.9913
LrLr3+ + 3eLr−1.963
CfCf3+ + 3eCf(s)−1.943
EsEs3+ + 3eEs(s)−1.913
PaPa4+ + ePa3+−1.91
AmAm2+ + 2eAm(s)−1.92
ThTh4+ + 4eTh(s)−1.8994
FmFm3+ + 3eFm−1.893
NN2(g) + 2H2O(l) + 4H+ + 2e2NH3OH+−1.872
NpNp3+ + 3eNp(s)−1.8563
BeBe2+ + 2eBe(s)−1.8472
PH2PO− 2 + eP(s) + 2OH−−1.821
UU3+ + 3eU(s)−1.7983
SrSr2+ + 2eSr(Hg)−1.7932
BH2BO− 3 + H2O + 3eB(s) + 4OH−−1.793
ThThO2 + 4H+ + 4eTh(s) + 2H2O−1.7894
HfHfO2+ + 2H+ + 4eHf(s) + H2O−1.7244
PHPO2− 3 + 2H2O + 3eP(s) + 5OH−−1.713
SiSiO2− 3 + 3H2O + 4eSi(s) + 6OH−−1.6974
AlAl3+ + 3eAl(s)−1.6623
TiTi2+ + 2eTi(s)−1.632
ZrZrO2(s) + 4H+ + 4eZr(s) + 2H2O−1.5534
ZrZr4+ + 4eZr(s)−1.454
TiTi3+ + 3eTi(s)−1.373
TiTiO(s) + 2H+ + 2eTi(s) + H2O−1.312
BB(OH)− 4 + 4H2O(l) + 8eBH− 4 + 8OH−−1.248
TiTi2O3(s) + 2H+ + 2e2TiO(s) + H2O−1.232
GaGaO(OH)− 2 + H2O(l) + 3eGa(s) + 3OH−−1.223
ZnZn(OH)2− 4 + 2eZn(s) + 4OH−−1.1992
MnMn2+ + 2eMn(s)−1.1852
FeFe(CN)4− 6 + 6H+ + 2eFe(s) + 6HCN(aq)−1.162
CC(s) + 3H2O(l) + 2eCH3OH(l) + 2OH−−1.1482
CrCr(CN)3− 6 + eCr(CN)4− 6−1.1431
TeTe(s) + 2eTe2−−1.1432
VV2+ + 2eV(s)−1.132
NbNb3+ + 3eNb(s)−1.0993
SnSn(s) + 4H+ + 4eSnH4(g)−1.074
PoPo(s) + 2ePo2−−1.0212
Cr[Cr(edta)(H2O)]− + e[Cr(edta)(H2O)]2−−0.991
P2H3PO4(aq) + 2H+ + 2e(H2PO3)2(aq) + H2O(l)−0.9332
CCO2− 3 + 3H+ + 2eHCO− 2 + H2O(l)−0.932
TiTiO2+ + 2H+ + 4eTi(s) + H2O−0.934
SiSiO2(quartz) + 4H+ + 4eSi(s) + 2H2O−0.9094
CrCr2+ + 2eCr(s)−0.92
BB(OH)3(aq) + 3H+ + 3eB(s) + 3H2O−0.893
FeFe(OH)2(s) + 2eFe(s) + 2OH−−0.892
FeFe2O3(s) + 3H2O + 2e2Fe(OH)2(s) + 2OH−−0.862
H2H2O + 2eH2(g) + 2OH−−0.82772
BiBi(s) + 3H+ + 3eBiH3−0.83
ZnZn2+ + 2eZn(Hg)−0.76282
ZnZn2+ + 2eZn(s)−0.76182
TaTa2O5(s) + 10H+ + 10e2Ta(s) + 5H2O−0.7510
CrCr3+ + 3eCr(s)−0.743
Te2Te(s) + 2eTe2− 2−0.742
NiNi(OH)2(s) + 2eNi(s) + 2OH−−0.722
NbNb2O5(s) + 10H+ + 10e2Nb(s) + 5H2O(l)−0.710
AgAg2S(s) + 2e2Ag(s) + S2−(aq)−0.692
TeTe2− 2 + 4H+ + 2e2H2Te(g)−0.642
SbSb(OH)− 4 + 3eSb(s) + 4OH−−0.6393
Au[Au(CN)2]− + eAu(s) + 2CN−−0.61
TaTa3+ + 3eTa(s)−0.63
PbPbO(s) + H2O + 2ePb(s) + 2OH−−0.5802
Ti2TiO2(s) + 2H+ + 2eTi2O3(s) + H2O−0.562
GaGa3+ + 3eGa(s)−0.5493
UU4+ + eU3+−0.521
PH3PO2(aq) + H+ + eP(white) + 2H2O−0.5081
PH3PO3(aq) + 2H+ + 2eH3PO2(aq) + H2O−0.4992
NiNiO2(s) + 2H2O + 2eNi(OH)2(s) + 2OH−−0.492
SbSb(OH)− 6 + 2eSb(OH)− 4 + 2OH−−0.4652
PH3PO3(aq) + 3H+ + 3eP(red) + 3H2O−0.4543
BiBi2O3(s) + 3H2O(l) + 6eBi(s) + 6OH−−0.4526
TaTaF2− 7 + 7H+ + 5eTa(s) + 7HF(l)−0.455
InIn3+ + 2eIn+−0.4442
CuCu(CN)− 2 + eCu(s) + 2CN−−0.441
FeFe2+ + 2eFe(s)−0.442
C2CO2(g) + 2H+ + 2eHOOCCOOH(aq)−0.432
CrCr3+ + eCr2+−0.4071
CdCd2+ + 2eCd(s)−0.42
TiTi3+ + eTi2+−0.371
CuCu2O(s) + H2O + 2e2Cu(s) + 2OH−−0.362
PbPbSO4(s) + 2ePb(s) + SO2− 4−0.35882
PbPbSO4(s) + 2ePb(Hg) + SO2− 4−0.35052
EuEu3+ + eEu2+−0.351
InIn3+ + 3eIn(s)−0.343
TlTl+ + eTl(s)−0.341
GeGe(s) + 4H+ + 4eGeH4(g)−0.294
CoCo2+ + 2eCo(s)−0.282
PH3PO4(aq) + 2H+ + 2eH3PO3(aq) + H2O−0.2762
NN2(g) + 8H+ + 6e2NH+ 4−0.276
VV3+ + eV2+−0.261
NiNi2+ + 2eNi(s)−0.2572
S2HSO− 4 + 2H+ + 2eS2O2− 6 + 2H2O(l)−0.2532
AsAs(s) + 3H+ + 3eAsH3(g)−0.233
NN2(g) + 5H+ + 4eN2H+ 5−0.234
GaGa+ + eGa(s)−0.21
AgAgI(s) + eAg(s) + I−−0.152241
GeGeO2(s) + 4H+ + 4eGe(s) + 2H2O(l)−0.154
MoMoO2(s) + 4H+ + 4eMo(s) + 2H2O−0.154
SiSi(s) + 4H+ + 4eSiH4(g)−0.144
SnSn2+ + 2eSn(s)−0.132
OO2(g) + H+ + eHO• 2(aq)−0.131
InIn+ + eIn(s)−0.1261
PbPb2+ + 2ePb(s)−0.1262
WWO2(s) + 4H+ + 4eW(s) + 2H2O−0.124
GeGeO2(s) + 2H+ + 2eGeO(s) + H2O−0.1182
PP(red) + 3H+ + 3ePH3(g)−0.1113
CCO2(g) + 2H+ + 2eHCOOH(aq)−0.112
SeSe(s) + 2H+ + 2eH2Se(g)−0.112
CCO2(g) + 2H+ + 2eCO(g) + H2O−0.112
Snα-SnO(s) + 2H+ + 2eSn(s) + H2O−0.1042
CuCu(NH3)+ 2 + eCu(s) + 2NH3(aq)−0.11
NbNb2O5(s) + 10H+ + 4e2Nb3+ + 5H2O(l)−0.14
WWO3(aq) + 6H+ + 6eW(s) + 3H2O−0.096
SnSnO2(s) + 2H+ + 2eα-SnO(s) + H2O−0.0882
FeFe3O4(s) + 8H+ + 8e3Fe(s) + 4H2O−0.0858
VVOH2+ + H+ + eV2+ + H2O(l)−0.0821
PP(white) + 3H+ + 3ePH3(g)−0.0633
NN2O(g) + H2O(l) + 6H+ + 4e2NH3OH+−0.054
FeFe3+ + 3eFe(s)−0.043
CHCOOH(aq) + 2H+ + 2eHCHO(aq) + H2O−0.0342
H2H+ + 2eH2(g)02
AgAgBr(s) + eAg(s) + Br−0.071331
SS4O2− 6 + 2e2S2O2− 30.082
NN2(g) + 2H2O + 6H+ + 6e2NH4OH(aq)0.0926
HgHgO(s) + H2O + 2eHg(l) + 2OH−0.09772
CuCu(NH3)2+ 4 + eCu(NH3)+ 2 + 2NH3(aq)0.11
RuRu(NH3)3+ 6 + eRu(NH3)2+ 60.11
NN2H4(aq) + 4H2O + 2e2NH+ 4 + 4OH−0.112
MoH2MoO4(aq) + 6H+ + 6eMo(s) + 4H2O0.116
GeGe4+ + 4eGe(s)0.124
CC(s) + 4H+ + 4eCH4(g)0.134
CHCHO(aq) + 2H+ + 2eCH3OH(aq)0.132
SS(s) + 2H+ + 2eH2S(g)0.1442
SbSb2O3(s) + 6H+ + 6e2Sb(s) + 3H2O0.156
SnSn4+ + 2eSn2+0.1512
SHSO− 4 + 3H+ + 2eSO2(aq) + 2H2O0.1582
CuCu2+ + eCu+0.1591
UUO2+ 2 + eUO+ 20.1631
SSO2− 4 + 4H+ + 2eSO2(aq) + 2H2O0.172
TiTiO2+ + 2H+ + eTi3+ + H2O0.191
SbSbO+ + 2H+ + 3eSb(s) + H2O0.23
Fe3Fe2O3(s) + 2H+ + 2e2Fe3O4(s) + H2O0.222
AgAgCl(s) + eAg(s) + Cl−0.222331
AsH3AsO3(aq) + 3H+ + 3eAs(s) + 3H2O0.243
RuRu3+(aq) + eRu2+(aq)0.2491
PbPbO2(s) + H2O + 2eα-PbO(s) + 2OH−0.2542
GeGeO(s) + 2H+ + 2eGe(s) + H2O0.262
HgHg2Cl2(s) + 2e2Hg(l) + 2Cl−0.272
UUO+ 2 + 4H+ + eU4+ + 2H2O0.2731
AtAt + eAt−0.31
BiBi3+ + 3eBi(s)0.3083
C2HCNO + 2H+ + 2e(CN)2 + 2H2O0.3302
CuCu2+ + 2eCu(s)0.3372
VVO2+ + 2H+ + eV3+ + H2O0.3371
SbSb2O4(s) + 2H+ + 2eSb2O3(s) + H2O(l)0.3422
AtAt+ + 2eAt−0.362
Fe[Fe(CN)6]3− + e[Fe(CN)6]4−0.37041
C(CN)2 + 2H+ + 2e2HCN0.3732
P(H2PO3)2(aq) + 2H+ + 2e2H3PO30.382
S2SO2(aq) + 2H+ + 2eS2O2− 3 + H2O(l)0.42
OO2(g) + 2H2O + 4e4OH−(aq)0.4014
MoH2MoO4 + 6H+ + 3eMo3+ + 4H2O0.433
RuRu2+(aq) + 2eRu0.4552
VVO(OH)+ + 2H+ + eVOH2+ + H2O(l)0.4811
ReRe3+ + 3eRe(s)0.53
CCH3OH(aq) + 2H+ + 2eCH4(g) + H2O0.52
SSO2(aq) + 4H+ + 4eS(s) + 2H2O0.54
S4SO2(aq) + 4H+ + 6eS4O2− 6 + 2H2O(l)0.516
CuCu+ + eCu(s)0.521
CCO(g) + 2H+ + 2eC(s) + H2O0.522
II− 3 + 2e3I−0.532
TeTeO2(s) + 4H+ + 4eTe(s) + 2H2O(l)0.534
CuCu2+ + Cl− + eCuCl(s)0.541
II2(s) + 2e2I−0.542
Au[AuI4]− + 3eAu(s) + 4I−0.563
AsH3AsO4(aq) + 2H+ + 2eH3AsO3(aq) + H2O0.562
SS2O2− 6 + 4H+ + 2e2H2SO30.5692
Au[AuI2]− + eAu(s) + 2I−0.581
MnMnO− 4 + 2H2O + 3eMnO2(s) + 4OH−0.5953
SS2O2− 3 + 6H+ + 4e2S(s) + 3H2O0.64
FeFc+ + eFc(s)0.631Substantial literature variation
MoH2MoO4(aq) + 2H+ + 2eMoO2(s) + 2H2O0.652
NHN3(aq) + 11H+ + 8e3NH+ 40.698
OO2(g) + 2H+ + 2eH2O2(aq)0.6952
SbSb2O5(s) + 4H+ + 4eSb2O3(s) + 2H2O0.6994
CP-Benzoquinone + 2H+ + 2eHydroquinone0.69922
VH2V10O4− 28 + 24H+ + 10e10VO(OH)+ + 8H2O(l)0.72310
PtPtCl2− 6 + 2ePtCl2− 4 + 2Cl−0.7262
FeFe2O3(s) + 6H+ + 2e2Fe2+ + 3H2O0.7282
SeH2SeO3(aq) + 4H+ + 4eSe(s) + 3H2O0.744
AtAtO+ + 2H+ + 2eAt+ + H2O0.742
TlTl3+ + 3eTl(s)0.7413
NoNo3+ + eNo2+0.751
PtPtCl2− 4 + 2ePt(s) + 4Cl−0.7582
BrBrO− + H2O(l) + 2eBr− + 2OH−0.762
PoPo4+ + 4ePo0.764
S(SCN)2 + 2e2SCN−0.7692
FeFe3+ + eFe2+0.7711
HgHg2+ 2 + 2e2Hg(l)0.79732
AgAg+ + eAg(s)0.79961
N2NO− 3(aq) + 4H+ + 2eN2O4(g) + 2H2O0.8032
Fe2FeO2− 4 + 5H2O + 6eFe2O3(s) + 10OH−0.816
Au[AuBr4]− + 3eAu(s) + 4Br−0.853
HgHg2+ + 2eHg(l)0.852
Ir[IrCl6]2− + e[IrCl6]3−0.871
MnMnO− 4 + H+ + eHMnO− 40.91
PoPo4+ + 2ePo2+0.92
Hg2Hg2+ + 2eHg2+ 20.912
PdPd2+ + 2ePd(s)0.9152
Au[AuCl4]− + 3eAu(s) + 4Cl−0.933
NNO− 3 + 3H+ + 2eHNO2(aq)0.942
MnMnO2(s) + 4H+ + eMn3+ + 2H2O0.951
NNO− 3(aq) + 4H+ + 3eNO(g) + 2H2O(l)0.9583
Au[AuBr2]− + eAu(s) + 2Br−0.961
FeFe3O4(s) + 8H+ + 2e3Fe2+ + 4H2O0.982
Xe[HXeO6]3− + 2H2O + 2e[HXeO4]− + 4OH−0.992
NHNO2(aq) + H+ + eNO(g) + H2O(l)0.9961
AtHAtO + H+ + eAt + H2O1.01
V[VO2]+(aq) + 2H+ + e[VO]2+(aq) + H2O11
TeH6TeO6(aq) + 2H+ + 2eTeO2(s) + 4H2O1.022
NNO2(g) + 2H+ + 2eNO(g) + H2O(l)1.032
BrBr− 3 + 2e3Br−1.052
SbSb2O5(s) + 2H+ + 2eSb2O4(s) + H2O(l)1.0552
IICl− 2 + e2Cl− + I(s)1.061
BrBr2(l) + 2e2Br−1.0662
NN2O4(g) + 2H+ + 2e2HNO21.072
BrBr2(aq) + 2e2Br−1.08732
RuRuO2 + 4H+ + 2eRu2+(aq) + 2H2O1.1202
CuCu2+ + 2CN− + eCu(CN)− 21.121
IIO− 3 + 5H+ + 4eHIO(aq) + 2H2O1.134
OH2O2(aq) + H+ + eH2O(l) + HO•1.141
Au[AuCl2]− + eAu(s) + 2Cl−1.151
SeHSeO− 4 + 3H+ + 2eH2SeO3(aq) + H2O1.152
AgAg2O(s) + 2H+ + 2e2Ag(s) + H2O1.172
ClClO− 3 + 2H+ + eClO2(g) + H2O1.1751
Xe[HXeO6]3− + 5H2O + 8eXe(g) + 11OH−1.188
PtPt2+ + 2ePt(s)1.1882
ClClO2(g) + H+ + eHClO2(aq)1.191
I2IO− 3 + 12H+ + 10eI2(s) + 6H2O1.210
MnMnO2(s) + 4H+ + 2eMn2+ + 2H2O1.2242
OO2(g) + 4H+ + 4e2H2O1.2294
NN2H+ 5 + 3H+ + 2e2NH+ 41.282
ClClO− 4 + 2H+ + 2eClO− 3 + H2O1.232
Ru[Ru(bipy)3]3+ + e[Ru(bipy)3]2+1.241
Xe[HXeO4]− + 3H2O + 6eXe(g) + 7OH−1.246
N2NO− 3 + 12H+ + 10eN2(g) + 6H2O(l)1.2510
TlTl3+ + 2eTl+1.252
N2HNO2(aq) + 4H+ + 4eN2O(g) + 3H2O(l)1.2974
CrCr2O2− 7 + 14H+ + 6e2Cr3+ + 7H2O1.336
NNH3OH+ + 2H+ + 2eNH+ 4 + H2O(l)1.352
ClCl2(g) + 2e2Cl−1.362
RuRuO− 4(aq) + 8H+ + 5eRu2+(aq) + 4H2O1.3685
RuRuO4 + 4H+ + 4eRuO2 + 2H2O1.3874
CoCoO2(s) + 4H+ + eCo3+ + 2H2O1.421
N2NH3OH+ + H+ + 2eN2H+ 5 + 2H2O1.422
I2HIO(aq) + 2H+ + 2eI2(s) + 2H2O1.442
BrBrO− 3 + 5H+ + 4eHBrO(aq) + 2H2O1.4474
Pbβ-PbO2(s) + 4H+ + 2ePb2+ + 2H2O1.462
Pbα-PbO2(s) + 4H+ + 2ePb2+ + 2H2O1.4682
Br2BrO− 3 + 12H+ + 10eBr2(l) + 6H2O1.4810
AtHAtO3 + 4H+ + 4eHAtO + 2H2O1.54
MnMnO− 4 + 8H+ + 5eMn2+ + 4H2O1.515
OHO• 2 + H+ + eH2O2(aq)1.511
AuAu3+ + 3eAu(s)1.523
RuRuO2− 4(aq) + 8H+ + 4eRu2+(aq) + 4H2O1.5634
N2NO(g) + 2H+ + 2eN2O(g) + H2O(l)1.592
NiNiO2(s) + 2H+ + 2eNi2+ + 2OH−1.592
CeCe4+ + eCe3+1.611
Cl2HClO(aq) + 2H+ + 2eCl2(g) + 2H2O1.632
IIO− 4 + 2H+ + 2eIO− 3 + H2O1.642
AgAg2O3(s) + 6H+ + 4e2Ag+ + 3H2O1.674
ClHClO2(aq) + 2H+ + 2eHClO(aq) + H2O1.672
PbPb4+ + 2ePb2+1.692
MnMnO− 4 + 4H+ + 3eMnO2(s) + 2H2O1.73
BrBrO− 4 + 2H+ + 2eBrO− 3 + H2O1.742
AgAgO(s) + 2H+ + eAg+ + H2O1.771
NN2O(g) + 2H+ + 2eN2(g) + H2O(l)1.772
OH2O2(aq) + 2H+ + 2e2H2O1.782
AuAu+ + eAu(s)1.831
CoCo3+ + eCo2+1.921
AgAg2+ + eAg+1.981
OS2O2− 8 + 2e2SO2− 42.012
OO3(g) + 2H+ + 2eO2(g) + H2O2.0752
MnHMnO− 4 + 3H+ + 2eMnO2(s) + 2H2O2.092
XeXeO3(aq) + 6H+ + 6eXe(g) + 3H2O2.126
XeH4XeO6(aq) + 8H+ + 8eXe(g) + 6H2O2.188
FeFeO2− 4 + 8H+ + 3eFe3+ + 4H2O2.23
XeXeF2(aq) + 2H+ + 2eXe(g) + 2HF(aq)2.322
OHO• + H+ + eH2O(l)2.381
XeH4XeO6(aq) + 2H+ + 2eXeO3(aq) + 3H2O2.422
FF2(g) + 2e2F−2.872
CmCm4+ + e–Cm3+3.01Estimated
FF2(g) + 2H+ + 2e2HF(aq)3.0772
TbTb4+ + e–Tb3+3.11Estimated
PrPr4+ + e–Pr3+3.21Estimated
KrKrF2(aq) + 2eKr(g) + 2F−(aq)3.272Estimated

See also

Notes

External links

  • Chemistry LibreTexts (2021-04-26). . Chemistry LibreTexts.
  • California State University, Northridge (CSUN). (PDF). csun.edu. (PDF) from the original on 2017-12-15.
  • Wardman, Peter (1989). (PDF). srd.nist.gov. p. 1637. Bibcode:. doi:. (PDF) from the original on 2022-10-09.
  • 2008-07-20 at the Wayback Machine