Interesting facts
Interesting Facts about bis(2-methoxyethyl) benzene-1,2-dicarboxylate
Bis(2-methoxyethyl) benzene-1,2-dicarboxylate, often referred to simply as a plasticizer, is a compound that plays a significant role in polymer chemistry. Here are some compelling insights:
- Functionality: This compound is primarily used as a plasticizer, which means it is added to materials to improve their flexibility, workability, and durability. It is especially valued in the production of polyvinyl chloride (PVC).
- Hydrophobic properties: Due to its structure, it exhibits good hydrophobic behavior, making it suitable for various applications where water resistance is critical.
- Biodegradability: With growing concerns over environmental impact, bis(2-methoxyethyl) benzene-1,2-dicarboxylate stands out because it can be derived from *renewable sources*, hinting at potential biodegradability under the right conditions.
- Applications Galore: Beyond plastics, it has uses in
- Adhesives
- Coatings
- Sealants
- Interesting Chemistry: The presence of the methoxyethyl groups enhances the compound's viscosity, which is essential in its role as a diluent or modifier in various chemical formulations.
This compound is an excellent example of how an organic molecule can play a vital role in modern materials science. As consumer and industrial needs evolve, compounds like bis(2-methoxyethyl) benzene-1,2-dicarboxylate will continue to be at the forefront of research and application.
Synonyms
BIS(2-METHOXYETHYL) PHTHALATE
117-82-8
Kesscoflex MCP
2-Methoxyethyl phthalate
Dimethoxyethyl phthalate
Dimethylglycol phthalate
Di(2-methoxyethyl) phthalate
Kodaflex DMEP
Bis(methoxyethyl) phthalate
Methyl glycol phthalate
Di(2-methoxyethyl)phthalate
Methox
Dimethoxy ethyl phthalate
1,2-Benzenedicarboxylic acid, 1,2-bis(2-methoxyethyl) ester
Phthalic acid, di(methoxyethyl) ester
Phthalic acid, bis(2-methoxyethyl) ester
Dimethyl cellosolve phthalate
NSC 2147
1,2-Benzenedicarboxylic acid, bis(2-methoxyethyl) ester
HSDB 5016
Bis(methylglycol) phthalate
AI3-01366 (USDA)
EINECS 204-212-6
bis(2-methoxyethyl) benzene-1,2-dicarboxylate
BRN 2056929
DTXSID8025094
Di-(2-methoxyethyl)ester kyseliny ftalove
AI3-01366
68W8XUO221
NSC-2147
phthalic acid, bis-methylglycol ester
Di-(2-methoxyethyl)ester kyseliny ftalove [Czech]
Di-(2-Methoxyethyl) ester kyseliny ftalove [Czech]
Phthalic Acid Bis(2-methoxyethyl) Ester
Di-(2-Methoxyethyl) ester kyseliny ftalove
DTXCID805094
4-09-00-03241 (Beilstein Handbook Reference)
Bis(2-methoxyethyl)phthalate
bis(methoxyethyl)phthalate
CAS-117-82-8
Di-(2-Methoxyethyl) Ester Kyseliny Ftalove (Czech)
UNII-68W8XUO221
DIMETHYL GLYCOL PHTHALATE
Reomol P
Benzenedicarboxylic acid, bis(2-methoxyethyl) ester
MFCD00042842
2Methoxyethyl phthalate
Methoxy ethyl phthalate
di(Methoxyethyl)phthalate
Di(2methoxyethyl)phthalate
Di(2methoxyethyl) phthalate
Bis (methylglycol) phthalate
Di-(2-methoxyethyl)phthalate
SCHEMBL186285
1, bis(2-methoxyethyl) ester
WLN: 1O2OVR BVO2O1
CHEMBL1302251
NSC2147
Tox21_201857
Tox21_303033
AKOS015888206
Di(2methoxyethyl)ester kyseliny ftalove
Phthalic acid bis(2-methoxyethyl)ester
Phthalic acid, di(2-methoxyethyl)ester
Phthalic acid, bis(2methoxyethyl) ester
Di(2Methoxyethyl) ester kyseliny ftalove
NCGC00090803-01
NCGC00090803-02
NCGC00256966-01
NCGC00259406-01
BIS(2-METHOXYETHYL) PHTHALIC ACID
1-butyl 2-methyl benzene-1,2-dicarboxylate
NS00015576
P0965
Bis(methylglycol) phthalate, analytical standard
Phthalic acid, bis(2-methoxyethyl) ester (8CI)
PHTHALIC ACID, DI(2-METHOXYETHYL) ESTER
1,2Benzenedicarboxylic acid, bis(2methoxyethyl) ester
Bis(methylglycol) phthalate, technical, >=90% (GC)
Q15632774
204-212-6
Solubility of bis(2-methoxyethyl) benzene-1,2-dicarboxylate
bis(2-methoxyethyl) benzene-1,2-dicarboxylate, often abbreviated as BMEDC, presents a unique profile regarding its solubility characteristics. Understanding its solubility is essential for applications in pharmaceuticals, cosmetics, and industrial formulations. Here are some key points:
In conclusion, the solubility of bis(2-methoxyethyl) benzene-1,2-dicarboxylate is influenced by several factors, including polarity and solvent nature. When working with this compound, it is advisable to consider these aspects carefully for successful utilization in various applications.