Product Description
2,5,7,10-Tetraoxaundecane (CAS No. 4431-83-8) is a synthetic polyether compound featuring four ether bonds integrated into an undecane chain structure. As part of the polyether family, it demonstrates high molecular flexibility, good chemical compatibility, and strong solvating capability.
With its unique ether-rich framework, this compound offers valuable opportunities in polymer chemistry, materials engineering, and pharmaceutical research. It can be utilized as an intermediate for the synthesis of advanced organic molecules and as a building block for developing functional polymer systems.
Depending on purity, formulation, and environmental conditions, 2,5,7,10-Tetraoxaundecane may be present as a clear, colorless liquid or solid at room temperature. Its physical and chemical properties, including melting point, boiling point, and reactivity, may vary according to structural modifications and application requirements.

BIS(2-METHOXYETHOXY)METHANE Chemical Properties
| Boiling point | 60°C 1,5mm |
| Density | 0,995 g/cm3 |
| Vapor pressure | 22Pa at 25℃ |
| Refractive index | 1.414 |
| Fp | 60°C/1.5mm |
| Form | liquid |
| Color | Colourless |
| Water Solubility | Fully miscible in water. |
| BRN | 1700087 |
| LogP | -0.69 at 22℃ |
| EPA Substance Registry System | 2,5,7,10-Tetraoxaundecane (4431-83-8) |
| Safety Statements | 24/25 |
| HS Code | 2909199090 |
Product Application of Bis(2-Methoxyethoxy)Methane (CAS No. 4431-83-8)
Bis(2-methoxyethoxy)methane is a multifunctional ether compound with the molecular formula C₇H₁₆O₄ and a molecular weight of 164.1995 g/mol. Its unique structure containing multiple ether groups provides excellent chemical compatibility, good solvency, and molecular flexibility.
Due to its favorable physicochemical properties, Bis(2-methoxyethoxy)methane has potential applications as a specialty solvent, chemical intermediate, and functional additive in various industrial fields. It can be utilized in organic synthesis, polymer-related processes, and the development of advanced materials where high solubility and stable ether functionality are required.
The compound’s ether-rich structure enables effective interactions with a wide range of organic substances, making it a valuable component for formulations and synthetic applications in chemical research and industrial manufacturing.

