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Bis(2-dimethylaminoethyl) ether
[CAS# 3033-62-3]

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Complete supplier list of Bis(2-dimethylaminoethyl) ether
Identification
Classification Organic raw materials >> Amino compound >> Acyclic monoamines, polyamines and their derivatives and salts
Name Bis(2-dimethylaminoethyl) ether
Synonyms N,N,N',N'-tetramethyl-2,2'-oxybis(ethylamine)
Molecular Structure CAS # 3033-62-3, Bis(2-dimethylaminoethyl) ether, N,N,N',N'-tetramethyl-2,2'-oxybis(ethylamine)
Molecular Formula C8H20N2O
Molecular Weight 160.26
CAS Registry Number 3033-62-3
EC Number 221-220-5
SMILES CN(C)CCOCCN(C)C
Properties
Solubility 1e+006 mg/L (25 ºC water)
Density 0.9±0.1 g/cm3, Calc.*
Index of Refraction 1.445, Calc.*, 1.43
Melting point -5.78 ºC
Boiling Point 194.8±15.0 ºC (760 mmHg), Calc.*, 185.25 ºC
Flash Point 46.2±17.6 ºC, Calc.*, 66 ºC
* Calculated using Advanced Chemistry Development (ACD/Labs) Software.
Safety Data
Hazard Symbols symbol symbol symbol   GHS05;GHS06;GHS07 Danger    Details
Hazard Statements H301-H311-H314-H318-H332-H412    Details
Precautionary Statements P260-P261-P262-P264-P264+P265-P270-P271-P273-P280-P301+P317-P301+P330+P331-P302+P352-P302+P361+P354-P304+P340-P305+P354+P338-P316-P317-P321-P330-P361+P364-P363-P405-P501    Details
Hazard Classification
up    Details
HazardClassCategory CodeHazard Statement
Acute toxicityAcute Tox.3H311
Acute toxicityAcute Tox.4H302
Skin corrosionSkin Corr.1BH314
Acute toxicityAcute Tox.4H332
Serious eye damageEye Dam.1H318
Chronic hazardous to the aquatic environmentAquatic Chronic3H412
Skin corrosionSkin Corr.1AH314
Acute toxicityAcute Tox.3H331
Acute toxicityAcute Tox.2H330
Acute toxicityAcute Tox.3H301
Acute toxicityAcute Tox.4H312
Eye irritationEye Irrit.2H319
Flammable liquidsFlam. Liq.3H226
Skin corrosionSkin Corr.1CH314
SDS Available
up Discovory and Applicatios
Bis(2-dimethylaminoethyl) ether, also known as 2,2'-[1,2-ethanediylbis(oxy)]bis[N,N-dimethylethanamine], is a chemical compound with notable significance in both industrial and research contexts. This compound is an example of an ether that incorporates dimethylaminoethyl groups, giving it unique properties that are leveraged in various applications.

The discovery of bis(2-dimethylaminoethyl) ether is rooted in the development of organic ethers and amines, where the combination of these functional groups creates compounds with specialized chemical behaviors. This particular ether was synthesized as part of research aimed at developing more effective catalysts and intermediates for a range of chemical processes.

One of the primary applications of bis(2-dimethylaminoethyl) ether is as a catalyst in polymerization reactions. Its structure allows it to act effectively as a nucleophile, facilitating the polymerization of monomers to form polymers with desirable properties. This capability is especially useful in the production of various plastics and synthetic materials. In polymer chemistry, it is employed to improve the efficiency of polymerization reactions and to control the molecular weight and properties of the resulting polymers.

In addition to its role as a catalyst, bis(2-dimethylaminoethyl) ether is utilized in the synthesis of other chemical compounds. It serves as an intermediate in the preparation of various pharmaceuticals and agrochemicals. The ability to modify the chemical structure of bis(2-dimethylaminoethyl) ether enables chemists to create compounds with specific functionalities, making it a valuable tool in drug development and chemical synthesis.

Another notable application of this compound is in the field of surface chemistry. Bis(2-dimethylaminoethyl) ether is used in the formulation of surfactants and other surface-active agents. Its ability to interact with both organic and inorganic surfaces makes it useful in creating formulations that improve the wetting, dispersing, and stabilizing properties of various products. This application is particularly relevant in industries such as coatings, detergents, and cosmetics.

The compound's role as a reagent in organic synthesis is also significant. Its chemical properties allow it to participate in various reactions, including those involving nucleophilic substitution and condensation. This versatility makes it an important reagent in the synthesis of complex organic molecules.

Ongoing research continues to explore new applications and modifications of bis(2-dimethylaminoethyl) ether. Innovations in chemical synthesis and materials science are likely to reveal additional uses for this compound, further enhancing its utility in industrial and research settings.

In summary, bis(2-dimethylaminoethyl) ether is a versatile chemical compound with important applications in polymerization, chemical synthesis, and surface chemistry. Its unique properties make it valuable in the production of polymers, pharmaceuticals, and surface-active agents, contributing to advancements in various fields of science and industry.
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