Home Chemistry Heterocyclic Building Blocks Aliphatic Heterocycles 1,4-Dioxane
Ether Cleavage: 1,4-Dioxane can be cleaved by strong acids to produce alcohols or other products. For instance, treatment with concentrated sulfuric acid (H2SO4) can lead to alcohol formation.
Reactions as a Solvent: 1,4-Dioxane is often used as a solvent in various reactions, particularly in organic synthesis. It can serve as a medium for nucleophilic substitution reactions, condensation reactions, and more.
Protection of Functional Groups: It can be used as a protective group for certain functional groups, such as carbonyls, in organic synthesis.
Polymerization: 1,4-Dioxane can be involved in polymerization reactions, such as in the synthesis of poly(ethylene oxide) or other polymeric materials.
Complexation: It can form complexes with various metal ions and can be used in coordination chemistry and as a ligand in some reactions.
Oxidation Reactions: Depending on the conditions and reagents, 1,4-dioxane can be oxidized to produce different products.
Reduction Reactions: Under appropriate conditions, it can be chemically reduced to yield different products.
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[1,4]Dioxan-2-ylmethyl-methyl-amine hydrochloride
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{[(2S)-1,4-dioxan-2-yl]methyl}(methyl)amine hydrochloride
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{[(2R)-1,4-dioxan-2-yl]methyl}(methyl)amine hydrochloride
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tert-Butyl (R)-((1,4-dioxan-2-yl)methyl)carbamate
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(S)-tert-butyl (1,4-dioxan-2-yl)methylcarbamate
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(S)-(1,4-Dioxan-2-yl)methanamine hydrochloride
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(R)-(1,4-Dioxan-2-yl)methanamine hydrochloride
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