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Ethylene glycol diphenyl ether CAS 104-66-5

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DPE:1,2-Diphenoxyethane CAS:104-66-5

104-66-5 – Names and Identifiers

Name1,2-Diphenoxyethane
Synonyms1,2-Diphenoxyethan
sym-Diphenoxyethane
1,2-Diphenoxyethane
1,2-Diphenoxy ethane
Ethlene diphenyl ether
(2-Phenoxyethoxy)benzene
Ethylene glycol diphenyl ether
1,1′-[ethane-1,2-diylbis(oxy)]dibenzene
1,1′-[1,2-ethanediylbis(oxy)]bis-benzen
1,1′-[1,2-Ethanediylbis(oxy)]bisbenzene
1,2-Diphenoxyethane,Ethylene glycol diphenyl ether
CAS104-66-5
EINECS203-224-9
InChIInChI=1/C14H14O2/c1-3-7-13(8-4-1)15-11-12-16-14-9-5-2-6-10-14/h1-10H,11-12H2
InChIKeyXCSGHNKDXGYELG-UHFFFAOYSA-N

104-66-5 – Physico-chemical Properties

Molecular FormulaC14H14O2
Molar Mass214.26
Density1.0781 (rough estimate)
Melting Point94-96 °C (lit.)
Boling Point185 °C / 12mmHg
Flash Point139.4°C
Water Solubility22mg/L at 25℃
SolubilityChloroform (Slightly), Methanol (Slightly)
Vapor Presure0Pa at 25℃
Appearancegrayish white crystal
ColorWhite to Off-White
BRN2052248
Storage ConditionSealed in dry,Room Temperature
Refractive Index1.5570 (estimate)
MDLMFCD00003039
UseThis product is for scientific research only and shall not be used for other purposes.

104-66-5 – Risk and Safety

Risk Codes51/53 – Toxic to aquatic organisms, may cause long-term adverse effects in the aquatic environment.
Safety DescriptionS22 – Do not breathe dust.
S24/25 – Avoid contact with skin and eyes.
S61 – Avoid release to the environment. Refer to special instructions / safety data sheets.
S36 – Wear suitable protective clothing.
S29/56 –
UN IDsUN 3077 9 / PGIII
WGK Germany3
TSCAYes
HS Code29093090

104-66-5 – Reference Information

LogP3.81 at 25℃
use1,2-diphenoxyethane (DPE) has attracted much attention as a new type of heat-sensitive material sensitizer and a potential polyolefin catalyst additive.
Synthesis methodOnly a few documents have reported the synthesis of 1, 2-diphenoxy ethane, mainly through phenol and 1, 2-dichloroethane or ethylene glycol sulfonate in alkaline water or ethanol medium. The reaction is prepared as the starting material. The yield is reported to be as high as 80%, but the product contains more impurities, the synthesized crude product needs to be purified by high temperature distillation (collection temperature is about 200 ℃, vacuum degree is below 700Pa). This process consumes a lot of energy, and due to the high freezing point of the product, it is easy to block the pipeline, which puts forward high requirements on the equipment.
There are also reports of synthesizing 1,2-diphenoxy ethane with 1,2-dibromoethane and phenol as raw materials and ethanol as solvent, but the yield is only 30%. In the reaction, 1,2-dibromoethane is easy to undergo side reactions to convert into bromoethylene, resulting in low yield.

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Declaration: The products displayed on this website are intended exclusively for industrial applications or scientific research. They are not intended for medical, pharmaceutical, or food use. In accordance with applicable laws and regulations, purchasing organizations must hold valid qualifications and approvals.

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