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Ammonium Persulfate (APS) Ammonium peroxydisulfate

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Description

Ammonium Persulfate

Other Names: Ammonium peroxydisulfate, Ammonium peroxodisulfate, Diammonium peroxydisulfate, APS
Chemical Formula: (NH4)2S2O8
Molar Mass: 228.20 g/mol
CAS Number: 7727-54-0
SMILES: [NH4+].[NH4+].[O-]S(=O)(=O)OOS(=O)(=O)[O-]
Appearance: Colorless crystals or white crystalline powder
Odor: Odorless

Ammonium persulfate is an inorganic salt containing ammonium cations and the peroxydisulfate anion, S2O82−. The peroxydisulfate ion contains a peroxide O–O bond and acts as a strong oxidizing species. Thermal, chemical or catalytic activation of persulfate can generate highly reactive sulfate radical anions (SO4•−), which are important intermediates in oxidation and free-radical processes. Because of this chemistry, ammonium persulfate is extensively investigated as an oxidizing reagent and as an initiator of radical polymerization. Its high solubility in water makes it particularly suitable for reactions performed in aqueous media, including the preparation and modification of polymeric materials.

Chemical and physical properties

Ammonium persulfate is a colorless to white crystalline solid with a density of approximately 1.98 g/cm3 at room temperature. It is highly soluble in water, with reported solubility of approximately 83.5 g per 100 g of water at 25 °C.

The compound does not exhibit a conventional melting point under atmospheric conditions because it undergoes thermal decomposition. Decomposition is reported at approximately 120 °C. The stability of persulfate solutions decreases with increasing temperature, and aqueous solutions can undergo gradual decomposition even at ambient conditions.

The characteristic chemical behavior of ammonium persulfate originates from the peroxide bond within the S2O82− ion. Homolytic cleavage can generate sulfate radical anions, which are highly reactive oxidizing radicals. In aqueous systems, sulfate radicals can also participate in reactions that generate hydroxyl radicals and other reactive intermediates.

Aqueous ammonium persulfate solutions are acidic. The combination of high water solubility, strong oxidizing properties and the ability to generate radicals makes the compound useful in both homogeneous aqueous reactions and multiphase polymerization systems.

Applications

Ammonium persulfate is widely used as an initiator in free-radical polymerization. Thermal decomposition of persulfate generates sulfate radical species capable of initiating polymerization of vinyl monomers. Scientific studies report its use in polymerization reactions involving acrylamide, acrylic acid, acrylates, methacrylates, acrylonitrile and related monomers.

It is particularly useful for aqueous polymerization because of its high water solubility. Ammonium persulfate has been employed in solution, emulsion, inverse-emulsion and suspension polymerization processes, as well as in graft copolymerization and the preparation of hydrogels and polymer coatings.

Ammonium persulfate can also be combined with reducing agents to form redox initiation systems. Such systems generate radicals through electron-transfer reactions and can initiate polymerization at temperatures lower than those required for purely thermal persulfate decomposition. Examples investigated in polymer research include ammonium persulfate combined with sodium metabisulfite or systems activated by tetramethylethylenediamine (TEMED).

In materials research, ammonium persulfate is used as an oxidizing reagent in the synthesis and modification of functional polymers. Its radical-generating properties are particularly important in studies of polymer grafting, surface modification, hydrogel formation and preparation of polymeric coatings.

Ammonium persulfate is also used in laboratory oxidation chemistry and in studies of persulfate activation. The formation and reactions of sulfate radicals are investigated in relation to oxidation mechanisms, reaction kinetics and degradation of organic compounds in aqueous systems.

Scientific references

National Center for Biotechnology Information (NCBI), PubChem. Ammonium Persulfate, CID 62648. Chemical identity and physicochemical data including molecular formula, molecular mass, appearance, solubility, density and thermal decomposition.

Yiamsawas, D.; Kangwansupamonkon, W.; Chailapakul, O.; Kiatkamjornwong, S. Synthesis and swelling properties of poly[acrylamide-co-(crotonic acid)] superabsorbents. Reactive and Functional Polymers, 2007, 67(10), 865–882. DOI: 10.1016/j.reactfunctpolym.2007.05.011.

Sun, L.; Zhu, G.; Zhao, Y.; Yan, X.; Mou, S.; Dovichi, N. J. Thermally-initiated free radical polymerization for reproducible production of stable linear polyacrylamide coated capillaries, and their application to proteomic analysis using capillary zone electrophoresis–mass spectrometry. Talanta, 2015. DOI: 10.1016/j.talanta.2015.05.035.

Fernández-García, M.; Madruga, E. L. Free-radical aqueous slurry polymerizations of acrylonitrile: End-groups and other minor structures in polyacrylonitriles initiated by ammonium persulfate/sodium metabisulfite. Polymer, 1994, 35(2), 250–256. DOI: 10.1016/0032-3861(94)90687-4.

Szabó, Á.; Szabó, G.; Zrínyi, M. Persulfate initiated free-radical polymerization of itaconic acid: Kinetics, end-groups and side products. European Polymer Journal, 2018. DOI: 10.1016/j.eurpolymj.2018.07.035.

SAFETY:

Signal Word Danger

Hazard Statements May intensify fire; oxidizer Harmful if swallowed Causes skin irritation Causes serious eye irritation May cause an allergic skin reaction May cause allergy or asthma symptoms or breathing difficulties if inhaled May cause respiratory irritation

Precautionary Statements Prevention Wash face, hands and any exposed skin thoroughly after handling Do not eat, drink or smoke when using this product Wear protective gloves/protective clothing/eye protection/face protection Avoid breathing dust/fume/gas/mist/vapors/spray In case of inadequate ventilation wear respiratory protection Contaminated work clothing should not be allowed out of the workplace Use only outdoors or in a well-ventilated area Keep away from heat/sparks/open flames/hot surfaces. - No smoking Keep/Store away from clothing/ other combustible materials Take any precaution to avoid mixing with combustibles Inhalation If experiencing respiratory symptoms: Call a POISON CENTER or doctor/physician IF INHALED: Remove victim to fresh air and keep at rest in a position comfortable for breathing Skin IF ON SKIN: Wash with plenty of soap and water Take off contaminated clothing and wash before reuse If skin irritation or rash occurs: Get medical advice/attention Eyes IF IN EYES: Rinse cautiously with water for several minutes. Remove contact lenses, if present and easy to do. ContinuerinsingIf eye irritation persists: Get medical advice/attention Ingestion IF SWALLOWED: Call a POISON CENTER or doctor/physician if you feel unwell Rinse mouth Fire In case of fire: Use CO2, dry chemical, or foam for extinction Storage Store in a well-ventilated place. Keep container tightly closed Store locked up Disposal Dispose of contents/container to an approved waste disposal plant Hazards not otherwise classified (HNOC) None identified


Environmental Considerations

  • Decomposition: Breaks down into sulfate and ammonium ions in water, which are less harmful but require controlled use to avoid excessive nutrient loads in ecosystems.
  • Disposal: Must be disposed of in accordance with local regulations to prevent environmental contamination.

 

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