Calculate the standard reduction potential (E'o) for the CO2/methanol redox pair. (Only have the statistics of the Gibbs Free Energy)
Carbon compound
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Carbon compound
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Metal
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Nonmetal
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Nitrogen compound
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CO, -137.34
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Glutamine, -529.7
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Cu+, +50.28
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H2, 0
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N2, 0
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CO2, -394.4
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Glyceraldehyde, -437.65
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Cu2+, Calculate the standard reduction potential (E'o) for the CO2/methanol redox pair. (Only have the statistics of the Gibbs Free Energy)+64.94
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H+, 0 at pH 0; -39.83 at pH 7 (-5.69 per pH unit)
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NO, +86.57
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CH4, -50.75
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Glycerate, -658.1
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CuS, -49.02
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02, 0
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NO2, +51.95
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H2003, -623.16
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Glycerol, -488.52
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Fe°, 0
Fe2+, -78.87
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OH-, -157.3 at pH 14; -198.76 at pH 7; -237.57 at pH 0
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NO2-,-37.2
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HCO3-, -586.85
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Glycine, -370.8
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Fe3+, -4.6
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H2O, -237.17
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NO3-,-111.34
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CO32-, -527.90
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Glycolate, -530.95
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FeCO3, -673.23
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H202, -134.1
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NH3, -26.57
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Acetaldehyde, -139.9
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Glyoxylate, -468.6
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FeS2, -150.84 FeS, -100.4
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PO43-, -1026.55
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NH4÷, -79.37
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Acetate, -369.41
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Guanine, +46.99
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FeSO4, -829.62
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Se°, 0
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N20, +104.18
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Acetone, -161.17
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a-Ketoglutarate, -797.55
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PbS, -92.59
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H2Se, -77.09
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N2H4, +128
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Alanine, -371.54
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Lactate, -517.81
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Mn2t, -227.93
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Se042-, -439.95
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Arginine, -240.2
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Lactose, -1515.24
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Mn3+, -82.12
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S°, o
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Aspartate, -700.4
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Malate, -845.08
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Mn04-, -506.57
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S032-, -486.6
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Benzene, +124.5
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Mannitol, -942.61
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Mn02, -456.71
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5042-, -744.6
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Benzoic acid, -245.6
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Methanol, -175.39
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MnSO4, -955.32
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52032-, -513.4
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n-Butanol, -171.84
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Methionine, -502.92
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HgS, -49.02
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H2S, -27.81
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Butyrate, -352.63
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Methylamine, -40.0
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MoS2, -225.42
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HS-, +12.05
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Caproate, -335.96
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Oxalate, -674.04
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ZnS, -198.60
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S2-, +85.8
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Citrate, -1168.34
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Palmitic acid, -305
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o-Cresol, -37.1
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Phenol, -47.6
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Crotonate, -277.4
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n-Propanol, -175.81
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Cysteine, -339.8
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Propionate, -361.08
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Dimethylamine, -3.3
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Pyruvate, -474.63
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Ethanol, -181.75
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Ribose, -757.3
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Formaldehyde, -130.54
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Succinate, -690.23
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Formate, -351.04
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Sucrose, -370.90
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