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The 203 pages that link to Redox, each with the reason it gives.
Oxidation stateRelated: Changes in assigned oxidation states identify which species are oxidized and reduced.
OxygenNarrower topic: Oxygen often accepts electrons as other substances are oxidized.
OxidationNarrower topic: It describes the complete electron-transfer process that oxidation alone cannot capture.
Acid–base reactionCompared with: Redox reactions transfer electrons between species, unlike Lewis reactions that share an electron pair.
CorrosionNarrower topic: Corrosion of metals commonly couples metal oxidation with reduction of another species.
Oxidizing agentNarrower topic: Oxidizing agents participate in redox reactions by accepting electrons.
Reactive oxygen speciesNarrower topic: Reactive oxygen species form and act through electron-transfer chemistry.
ElectrolysisNarrower topic: Every electrolytic reaction couples oxidation at one electrode with reduction at the other.
Oxidative stressNarrower topic: Oxidative stress arises from disrupted control of electron-transfer chemistry in cells.
Chemical reactionBroader topic: It powers batteries, corrosion, respiration, and many industrial processes.
Nernst equationRelated: Its balanced electron stoichiometry sets the equation’s charge factor.
Oxidative phosphorylationNarrower topic: Electron transfers release energy that respiratory complexes harness for proton pumping.
Electrochemical cellNarrower topic: Every electrochemical cell couples oxidation to reduction at separate or shared electrodes.
MetabolismRelated: Electron transfers let metabolic pathways capture energy and move chemical power between molecules.
Conjugate acid–base pairCompared with: Redox pairs track electron transfer, whereas conjugate acid–base pairs differ by a proton.
Planetary habitabilityRelated: Redox gradients can supply usable energy to life even where sunlight is unavailable.
Fuel cellNarrower topic: Fuel-cell electricity arises from separating the electron-transfer steps of a redox reaction.
ElectroplatingNarrower topic: Metal ions are reduced to atoms as the plating reaction proceeds.
Anaerobic respirationNarrower topic: Respiration conserves energy through a sequence of redox reactions.
AntioxidantNarrower topic: Antioxidant activity is one outcome of electron-transfer chemistry.
Alcoholic fermentationNarrower topic: Ethanol formation transfers reducing power from NADH to acetaldehyde.
IodineRelated: Iodine readily interconverts between elemental iodine, iodide, and other oxidation states.
Galvanic cellNarrower topic: A spontaneous redox reaction supplies the chemical energy converted by the cell.
Disulfide bondRelated: Disulfide formation is an oxidation, while bond cleavage is a reduction.
Redox potentialNarrower topic: Redox potential quantifies the electron-transfer tendency that drives these reactions.
Standard electrode potentialNarrower topic: Each electrode potential describes one side of an electron-transfer reaction.
ElectrochemistryNarrower topic: Electron transfer is the shared chemical basis of electrochemical reactions.
Electrode potentialNarrower topic: Electrode potential expresses the tendency of a redox half-reaction to proceed.
Iron oxideNarrower topic: Iron oxidation and oxygen reduction drive the formation of many iron oxides.
ChemosynthesisNarrower topic: Electron transfer in redox reactions releases the energy chemosynthetic metabolism captures.
Electron transport chainNarrower topic: Each carrier passes electrons by alternating between oxidized and reduced states.
Faraday's laws of electrolysisRelated: Electrode products form through electron-transfer reactions whose stoichiometry sets the charge required.
HemeRelated: Heme proteins can transfer electrons by changing the oxidation state of their iron.
Lactate dehydrogenaseNarrower topic: The enzyme catalyzes coupled oxidation and reduction of pyruvate, lactate, NADH, and NAD⁺.
AnodeNarrower topic: Anodic oxidation is one half of a coupled redox reaction.
GeochemistryRelated: Redox conditions control the forms and mobility of many elements in Earth materials.
HalogenRelated: Halogen reactions commonly involve gaining electrons while another substance is oxidized.
Chemical oxygen demandNarrower topic: COD depends on electron transfer from oxidizable substances to a chemical oxidant.
Conjugate acidCompared with: Redox reactions transfer electrons rather than the protons that create conjugate acids.
NADPHNarrower topic: NADPH's central role is to donate electrons in cellular redox reactions.
Ore depositRelated: Changes in oxidation state can make dissolved metals precipitate as ore minerals.
ReductionNarrower topic: Reduction is one half of every redox reaction.
CathodeNarrower topic: Cathodic reduction is one half of the coupled redox chemistry in a cell.
Electrochemical seriesNarrower topic: Each entry represents the reduction direction of a redox reaction and its reverse oxidation.
Flavin adenine dinucleotideNarrower topic: FAD’s coenzyme role is to accept or donate electrons in these reactions.
Aerobic respirationNarrower topic: Respiration releases fuel energy through linked electron-transfer reactions.
Ascorbic acidNarrower topic: Ascorbic acid acts as an electron donor in reactions that maintain cellular redox balance.
CysteineRelated: Forming a disulfide oxidizes cysteine thiols; breaking it reduces them.
BloomeryNarrower topic: Iron reduction and carbon oxidation are coupled reactions within the furnace.
Chlorine dioxideNarrower topic: Its reactions with microbes and dyes are electron-transfer processes.