CAS Number:
25322-68-3 (covers the PEG polymer series; specific grades like PEG 400 are often referenced by this number)
Chemical Name:
Polyethylene Glycol (Average Molecular Weight 400). Also known as Macrogol 400
Molecular Formula:
H(OCH2CH2)nOH, where n averages 8-9 for PEG 400
Molecular Weight:
380 - 420 g/mol
Common Form:
Clear, colorless or slightly yellow, viscous, hygroscopic liquid. Odorless or with a faint, characteristic odor
Uses:
PEG 400 is prized for its excellent solvent properties, miscibility with water and many organics, low toxicity, and humectancy.
Primary Applications:
· Pharmaceuticals: A versatile solvent, co-solvent, and liquid vehicle for oral, topical, and parenteral (injectable) formulations. Used in elixirs, soft gelatin capsules, ointments, and as a laxative.
· Cosmetics & Personal Care: Acts as a humectant, solvent, and viscosity modifier in creams, lotions, toothpastes, and deodorants. Helps carry active ingredients and retain moisture.
· Chemical & Industrial: Used as a plasticizer, lubricant, and reaction medium in chemical synthesis. Also found in inks, dyes, and as a hydraulic fluid.
· Food Industry: Occasionally used as a humectant, dispersant, or carrier for flavors and colors.
What does PEG 400 do in a formulation?
- Solvent & Co-solvent: Its core function. Dissolves a wide range of both hydrophilic and moderately lipophilic substances, improving the solubility and stability of active ingredients.
- Humectant: Attracts and retains moisture from the air, preventing formulations from drying out.
- Plasticizer & Viscosity Modifier: Softens and adds flexibility to films (e.g., in capsule shells) and adjusts the flow properties of liquids and creams.
- Vehicle & Carrier: Provides a liquid base for delivering drugs or actives in a uniform dose.
- Lubricant: Reduces friction in mechanical applications and can provide a smooth feel on skin.
Safety Profile:
· Hazard Classification: Generally recognized as safe (GRAS) for specific uses but can be harmful if swallowed in large quantities (laxative effect). Classified as causing serious eye irritation.
· Toxicity: Low acute oral toxicity (LD?? > 30,000 mg/kg in rats). However, significant ingestion leads to osmotic diarrhea (its mechanism as a laxative).
· Skin/Eye Contact: Can cause eye irritation. Prolonged skin contact may lead to mild irritation due to its hygroscopic nature (drying effect).
· Metabolism & Impurities: The primary safety concern relates to potential impurities (ethylene oxide, 1,4-dioxane) from production and the metabolism of high doses. High-purity pharmaceutical grades minimize this.
· Required PPE: Safety glasses and gloves are recommended for routine handling to prevent eye contact and prolonged skin exposure.
· Storage: Store in airtight containers in a cool, dry place due to its hygroscopic nature.
Technical profile:
| Property | Values |
| Appearance | Clear, colorless, viscous liquid |
| Acid Value | 195-205 mg KOH/g (indicator of purity) |
| Viscosity (25°C) | 90 - 110 cSt (a defining physical property) |
| Freezing Point | Approx. 4 - 8 °C (it supercools easily, often remaining liquid below this point) |
| Boiling Point | > 250 °C (with decomposition) |
| Density | ~1.125 g/cm³ at 20°C |
| Refractive Index | ~1.465 at 20°C |
| pH (1:1 in water) | 4.5 - 7.5 |
| Solubility | Miscible with water in all proportions. Soluble in many organic solvents (alcohols, acetone, chloroform). Insoluble in diethyl ether and aliphatic hydrocarbons. |
| Hydroxyl Value | 264 - 300 mg KOH/g |
| Typical Purity (Pharmaceutical Grade) | Complying with USP/NF or Ph. Eur. monographs. |