Plasticizers

bis-(2-Butoxyethyl)adipate (BPM-165914)

  • CAS: 141-18-4
  • Molecular Weight: 346.52
  • Molecular Formula: C18H34 O6

Hexanedioic acid,1,6-bis[2-(2-butoxyethoxy)ethyl] ester (BPM-049569)

  • CAS: 141-17-3
  • Molecular Weight: 434.64
  • Molecular Formula: C22H42 O8

Diethyl maleate (BPM-058455)

  • CAS: 141-05-9
  • Molecular Weight: 172.18
  • Molecular Formula: C8H12O4

Diisobutyl adipate (BPM-058454)

  • CAS: 141-04-8
  • Molecular Weight: 258.36
  • Molecular Formula: C14H26O4

Di(2-ethylhexyl) Fumarate (BPM-149613)

  • CAS: 141-02-6
  • Molecular Weight: 340.5
  • Molecular Formula: C20H36O4

Methyl acetyl ricinoleate (BPM-185074)

  • CAS: 140-03-4
  • Molecular Weight: 354.53
  • Molecular Formula: C21H38O4

Ethyl 4-Acetylbutyrate (BPM-301357)

  • CAS: 13984-57-1
  • Molecular Weight: 158.19
  • Molecular Formula: C8H14O3

Bis(2-ethylhexyl) Isophthalate (BPM-366537)

  • CAS: 137-89-3
  • Molecular Weight: 390.56
  • Molecular Formula: C24H38O4

Tris(1,3-Dichloro-2-Propyl)Phosphate (BPM-057957)

  • CAS: 13674-87-8
  • Molecular Weight: 430.91
  • Molecular Formula: C9H15Cl6O4P

Dipropyl phthalate (BPM-299676)

  • CAS: 131-16-8
  • Molecular Weight: 250.29
  • Molecular Formula: C14H18O4

Sucrose benzoate (BPM-056678)

  • CAS: 12738-64-6
  • Molecular Formula: C12H22O11.xC7H6O2

Benzyl Isononyl Phthalate (mixture of branched chain isomers) (BPM-366539)

  • CAS: 126198-74-1
  • Molecular Weight: 382.5
  • Molecular Formula: C24H30O4

Phosphoric aciddiphenyl ethylhexyl ester (BPM-009448)

  • CAS: 1241-94-7
  • Molecular Weight: 362.4
  • Molecular Formula: C20H27O4P

Diethyl Succinate (BPM-298094)

  • CAS: 123-25-1
  • Molecular Weight: 174.19
  • Molecular Formula: C8H14O4

diisooctyl sebacate (BPM-297885)

  • CAS: 122-62-3
  • Molecular Weight: 426.67
  • Molecular Formula: C26H50O4

Di(ethylene glycol)dibenzoate (BPM-356043)

  • CAS: 120-55-8
  • Molecular Weight: 314.34
  • Molecular Formula: C18H18O5

Phthalic Acid Bis(2-butoxyethyl) Ester (BPM-366538)

  • CAS: 117-83-9
  • Molecular Weight: 366.45
  • Molecular Formula: C20H30O6

Triphenyl phosphate (BPM-296132)

  • CAS: 115-86-6
  • Molecular Weight: 326.28
  • Molecular Formula: C18H15O4P

Diethylene glycol dibutyl ether (BPM-177331)

  • CAS: 112-73-2
  • Molecular Weight: 218.33
  • Molecular Formula: C12H26O3

2-Ethoxyethyl ether (BPM-067577)

  • CAS: 112-36-7
  • Molecular Weight: 162.23
  • Molecular Formula: C8H18O3

Introduction

Plasticizers

Polymer plasticizer is a polymer material additive widely used in industrial production. The use of polymer plasticizers can improve the properties of polymer materials, including making polymers flexible and lowering the glass transition temperature of polymers.[1] The polymer plasticizer in the plasticizing process of plastic can be regarded as the process of mutual dissolution of resin and plasticizer low molecular compound. However, compared with general solvents, plasticizers are required to remain in the polymer for a long time.[2]

Function of Plasticizer

Plasticizers can reduce the viscosity of polymers, improve the processing properties of polymers and their mixtures, reduce the frosting and crystallinity of products, and increase the biodegradability of plasticized products. Adding biodegradable plasticizers to biodegradable substances can accelerate the degradation rate of biodegradable products. Plasticizers can also increase the elongation of the polymer, reduce the tensile strength, increase the toughness of the polymer, improve the impact resistance, and increase or decrease the electrical conductivity or insulation of the product. In addition, plasticizers can also change the structure of polymers, soften the plasticized substances, and change the fluid characteristics of polymers, especially for products with high polymer content.

Application

Based on its excellent properties, plasticizers are widely used in construction industry, coating field, food packaging industry and others.

  • Construction Industry

The higher the water content of concrete used in the construction industry, the better its fluidity and workability. However, when there is enough water in the concrete, the strength of the concrete after setting is inversely proportional to the water content. Plasticizers can reduce the water content of concrete without affecting its workability, and at the same time increase the strength of concrete.

  • Coating Field

Adding a plasticizer to the resin coating can increase the flexibility of the coating film, improve the adhesion, and overcome the shortcomings of the coating film being hard and brittle. In addition, plasticizers can also improve the preparation process performance of coatings. The plasticizer used for resin coating should have good compatibility with the resin, which requires the plasticizer to have properties such as heat resistance, light resistance, cold resistance, weather resistance, and low volatility.

  • Food Packaging Industry

Common food packaging materials include polyethylene (PE) and polyvinyl chloride (PVC). Among them, a large amount of plasticizer is added to the PVC plastic wrap to make the PVC material soft and increase the viscosity. Presently, plasticizers have been widely used in fresh food packaging.

References

  1. Gu, N. et al. The synthesis of a novel plasticizer and its application in polymer electrolytes. Advanced Materials Research. Vol. 531.
  2. Bodaghi, A. An overview on the recent developments in reactive plasticizers in polymers. Polymers For Advanced Technologies. 2020, 31(3): 355-367.

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