KnowraCatalysisLinked fromLinked fromThe 68 pages that link to Catalysis, each with the reason it gives.All 68Related 41Narrower topic 25Compared with 2Heterogeneous catalysisNarrower topic: Heterogeneous catalysis is one broad mode of the general catalytic phenomenon.NickelNarrower topic: Nickel surfaces catalyze hydrogenation and other reactions by binding and activating reactants.ChemoselectivityNarrower topic: Catalysts can alter relative reaction rates and redirect chemoselectivity.Surface scienceNarrower topic: Surface science supplies molecular explanations for how solid catalysts bind and transform reactants.Asymmetric catalysisNarrower topic: Asymmetric catalysis is a selective form of this broader process.Manganese dioxideNarrower topic: Manganese dioxide catalyzes reactions including hydrogen peroxide decomposition and oxidation.Contact processNarrower topic: The process depends on a catalyst to make sulfur dioxide oxidation practical.IsomerizationNarrower topic: Catalysts lower barriers for many isomerizations without changing their equilibrium.RhodiumNarrower topic: Rhodium surfaces and complexes speed reactions by providing alternative pathways.AcrylonitrileNarrower topic: Catalysts enable selective, efficient conversion of propylene into acrylonitrile.Collision theoryNarrower topic: Catalysts provide pathways with lower energy barriers, making more collisions effective.d-blockNarrower topic: Accessible oxidation states and binding sites make many d-block elements effective catalysts.Wacker processNarrower topic: Palladium and copper are regenerated through linked catalytic cycles.Carborane acidNarrower topic: Strong, minimally coordinating proton donors can initiate or promote acid-catalyzed transformations.Karl ZieglerNarrower topic: Metal-containing catalysts enabled Ziegler’s selective polymer-forming reactions.Paul SabatierNarrower topic: Sabatier’s work helped make catalytic methods central to modern chemical synthesis.Enzyme unitNarrower topic: The unit measures how much catalysis an enzyme performs per minute.LuminolNarrower topic: Blood reveals luminol partly by catalyzing oxidation rather than supplying the light itself.SyngasNarrower topic: Catalysts drive both syngas production routes and its conversion into products.Yves ChauvinNarrower topic: Metathesis catalysts repeatedly form and break bonds without being consumed overall.ElectrideNarrower topic: Electron donation from electrides can alter the reactivity of supported catalytic metals.Electrophilic substitutionNarrower topic: Catalysts generate reactive electrophiles or lower barriers in several substitution reactions.Tin(IV) chlorideNarrower topic: Tin(IV) chloride can accelerate reactions through coordination to reactants.Ammonium metavanadateNarrower topic: Ammonium metavanadate is used to prepare catalysts containing vanadium oxides.TriacetinNarrower topic: Acid, base, or enzyme catalysts can promote routes to triacetin.
KnowraCatalysisLinked fromLinked fromThe 68 pages that link to Catalysis, each with the reason it gives.All 68Related 41Narrower topic 25Compared with 2Heterogeneous catalysisNarrower topic: Heterogeneous catalysis is one broad mode of the general catalytic phenomenon.NickelNarrower topic: Nickel surfaces catalyze hydrogenation and other reactions by binding and activating reactants.ChemoselectivityNarrower topic: Catalysts can alter relative reaction rates and redirect chemoselectivity.Surface scienceNarrower topic: Surface science supplies molecular explanations for how solid catalysts bind and transform reactants.Asymmetric catalysisNarrower topic: Asymmetric catalysis is a selective form of this broader process.Manganese dioxideNarrower topic: Manganese dioxide catalyzes reactions including hydrogen peroxide decomposition and oxidation.Contact processNarrower topic: The process depends on a catalyst to make sulfur dioxide oxidation practical.IsomerizationNarrower topic: Catalysts lower barriers for many isomerizations without changing their equilibrium.RhodiumNarrower topic: Rhodium surfaces and complexes speed reactions by providing alternative pathways.AcrylonitrileNarrower topic: Catalysts enable selective, efficient conversion of propylene into acrylonitrile.Collision theoryNarrower topic: Catalysts provide pathways with lower energy barriers, making more collisions effective.d-blockNarrower topic: Accessible oxidation states and binding sites make many d-block elements effective catalysts.Wacker processNarrower topic: Palladium and copper are regenerated through linked catalytic cycles.Carborane acidNarrower topic: Strong, minimally coordinating proton donors can initiate or promote acid-catalyzed transformations.Karl ZieglerNarrower topic: Metal-containing catalysts enabled Ziegler’s selective polymer-forming reactions.Paul SabatierNarrower topic: Sabatier’s work helped make catalytic methods central to modern chemical synthesis.Enzyme unitNarrower topic: The unit measures how much catalysis an enzyme performs per minute.LuminolNarrower topic: Blood reveals luminol partly by catalyzing oxidation rather than supplying the light itself.SyngasNarrower topic: Catalysts drive both syngas production routes and its conversion into products.Yves ChauvinNarrower topic: Metathesis catalysts repeatedly form and break bonds without being consumed overall.ElectrideNarrower topic: Electron donation from electrides can alter the reactivity of supported catalytic metals.Electrophilic substitutionNarrower topic: Catalysts generate reactive electrophiles or lower barriers in several substitution reactions.Tin(IV) chlorideNarrower topic: Tin(IV) chloride can accelerate reactions through coordination to reactants.Ammonium metavanadateNarrower topic: Ammonium metavanadate is used to prepare catalysts containing vanadium oxides.TriacetinNarrower topic: Acid, base, or enzyme catalysts can promote routes to triacetin.