PHOSPHITES ANTIOXIDANTS

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Category:Paint chemicals   Own Brand:MT  /MOQ:100KG  /From China/  B2B only.

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Introduction

One of the antioxidants. Phosphites Antioxidants are widely used in plastics, polymers and rubber industry.

Phosphite Antioxidants: Overview and Key Properties

Category Details
Chemical Type Organophosphorus compounds
Primary Function Secondary antioxidants (hydroperoxide decomposers)
Appearance Colorless to pale yellow liquids/powders
Solubility Soluble in most organic solvents

Common Types & Structures

Type Example Compounds Molecular Weight
Aryl Phosphites Tris(2.4-di-tert-butylphenyl) phosphite (168) 646 g/mol
Alkyl Phosphites Tris(nonylphenyl) phosphite (TNPP) 689 g/mol
Mixed Phosphites Diphenyl isodecyl phosphite 382 g/mol

Key Performance Properties

Property Value/Characteristic
Decomposition Temp. 180-300°C (varies by type)
Hydrolysis Stability Low to moderate
Effective pH Range 3-9
Typical Loading 0.05-0.5% in polymers

Mechanism of Action

Process Function
Hydroperoxide Decomposition Converts ROOH to ROH
Metal Deactivation Chelates pro-oxidant metals
Synergy with Phenolics Regenerates primary antioxidants

Applications by Polymer

Polymer Benefits
Polyolefins Prevents yellowing, maintains melt flow
PVC Improves heat stability
Engineering Plastics Retains mechanical properties
Rubber Extends service life

Comparison with Other Antioxidants

Antioxidant Type Phosphites vs.
Phenolic AOs Better color stability
Thioesters More effective at high temps
Hindered Amines Lower cost

Safety & Handling

Parameter Requirements
Oral LD50 >2.000 mg/kg (most types)
Storage Dry, inert atmosphere
Decomposition Products Phosphorus oxides

Market Data

Segment Market Share
Polypropylene 40%
PVC 25%
Polyethylene 20%
Other 15%

Leading Producers

Company Brand Examples
BASF Irgafos® 168
Dover Chemical Doverphos® S-480
Adeka Mark® HP-10

Advantages vs. Limitations

Advantages Limitations
Excellent melt stability Hydrolysis susceptibility
Cost-effective synergy Limited UV protection
Low color contribution May form acidic byproducts

Summary

Phosphite antioxidants serve as essential secondary antioxidants in polymer stabilization, effectively decomposing hydroperoxides and complementing primary phenolic antioxidants. While sensitive to hydrolysis, their ability to maintain polymer properties during processing makes them indispensable in polyolefins and engineering plastics. New hydrolytically stable versions are expanding applications in demanding environments.

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