4-ETHYLTHIOPHENOL
4-ETHYLTHIOPHENOL Basic information
- Product Name:
- 4-ETHYLTHIOPHENOL
- Synonyms:
-
- 4-ETHYLBENZENETHIOL
- 4-ETHYLTHIOPHENOL
- 4-ETHYLTHIOPHENOL 97%
- 4-Ethylthiophenol,97%
- 4-Ethylbenzenethiol, 4-Ethylphenyl mercaptan
- 4-ethylbenzenethiolate
- 4-Ethylbenzenethiol>
- 4-Ethylthiophenol,95%+
- CAS:
- 4946-13-8
- MF:
- C8H10S
- MW:
- 138.23
- EINECS:
- 670-930-5
- Product Categories:
-
- Phenol&Thiophenol&Mercaptan
- Phenoles and thiophenoles
- Mol File:
- 4946-13-8.mol
4-ETHYLTHIOPHENOL Chemical Properties
- Melting point:
- -30°C (estimate)
- Boiling point:
- 119 °C
- Density
- 1.02
- refractive index
- 1.563
- Flash point:
- 119-120°C/30mm
- storage temp.
- 2-8°C, stored under nitrogen
- form
- liquid
- pka
- 6.84±0.10(Predicted)
- color
- Clear, colourless
- Sensitive
- Air Sensitive
- BRN
- 1905734
- InChI
- InChI=1S/C8H10S/c1-2-7-3-5-8(9)6-4-7/h3-6,9H,2H2,1H3
- InChIKey
- WWQQPHUHTAZWDH-UHFFFAOYSA-N
- SMILES
- C1(S)=CC=C(CC)C=C1
- LogP
- 3.510 (est)
- CAS DataBase Reference
- 4946-13-8(CAS DataBase Reference)
Safety Information
- Hazard Codes
- Xi
- Risk Statements
- 20/21/22-36/37/38
- Safety Statements
- 26-36/37/39-36/37-23
- RIDADR
- 2810
- HazardClass
- 6.1
- HazardClass
- IRRITANT, AIR SENSITIVE, STENCH
- HS Code
- 29309090
MSDS
- Language:English Provider:ALFA
4-ETHYLTHIOPHENOL Usage And Synthesis
Uses
4-ETHYLTHIOPHENOL is a useful research chemical.
Chemical Properties
Colorless to pale yellow liquid
Synthesis
In an oxygen-free environment, 1080 g of was added to the preheating tank. 4,4'-Diethyl phenyl sulfide to make 4,4'-Diethyl phenyl sulfide preheating to 220 ??, then using a metering pump to 4,4'-Diethyl phenyl sulfide into the tubular reactor, using a liquid flow meter to control the flow rate of 4,4'-Diethyl phenyl sulfide into the tubular reactor, hydrogen sulfide gas into the tubular reactor, using a gas flow meter to control the flow rate of hydrogen sulfide gas into the tubular reactor, using a gas flow meter to control the flow rate of hydrogen sulfide gas into the tubular reactor. The flow rate of hydrogen sulfide gas was introduced into the tubular reactor, and a gas flow meter was used to control the flow rate of hydrogen sulfide gas into the tubular reactor, so as to make the hydrogen sulfide gas and 4,4'-diethyl phenyl sulfide in the tubular reactor contact at atmospheric pressure at 350 ?? and react in equimoles, wherein 4,4'-diethyl phenyl sulfide and hydrogen sulfide reacted at equimoles in the tubular reactor, with 4,4'-diethyl phenyl sulfide and hydrogen sulfide reacting in the tube reactor. The residence time of the sulfide and hydrogen sulfide in the tubular reactor was 3 s; the product of the reaction was condensed and distilled under reduced pressure to yield 1345 g of 4-ethylbenzenethiol. The yield of the product 4-ethylbenzenethiol (yield = actual amount of product/theoretical amount of product*100%) was calculated to be 97.8%, and the purity of the product was detected by gas chromatography, and the purity of the product was 99.2% by gas chromatography.
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