1,3-BUTANESULTONE CAS#: 3289-23-4; 凯望编码 (ChemWhat Code): 342098

IdentificationPhysical DataSpectra
Route of Synthesis (ROS)Safety and HazardsOther Data

Identification

英文名1,3-BUTANESULTONE CAS#: 3289-23-4
IUPAC Name5-methyloxathiolane 2,2-dioxide
分子结构
CAS编号 3289-23-4
EINECS NumberNo data available
MDL NumberMFCD00209959
Beilstein Registry NumberNo data available
别名1,2-Oxathiolane, 5-methyl-, 2,2-dioxide
1,3-Butanesultone
2,2-Dioxyde de 5-méthyl-1,2-oxathiolane
5-Methyl-1,2-oxathiolan-2,2-dioxid
5-Methyl-1,2-oxathiolane 2,2-dioxide
分子式C4H8O3S
分子量136.165
InChIInChI=1S/C4H8O3S/c1-4-2-3-8(5,6)7-4/h4H,2-3H2,1H3
InChI KeyRAEHYISCRHEVNT-UHFFFAOYSA-N
Canonical SMILESCC1CCS(=O)(=O)O1
Patent Information
Patent IDTitlePublication Date
US2024/332618ELECTROCHEMICAL DEVICE AND ELECTRONIC DEVICE CONTAINING SAME2024

Physical Data

AppearanceWhite powder
SolubilityNo data available
Flash PointNo data available
Refractive indexNo data available
SensitivityNo data available
Boiling Point, °CPressure (Boiling Point), Torr
1250.1
157.514
1242
Density, g·cm-3Measurement Temperature, °C
1.292925

Spectra

Description (NMR Spectroscopy)Nucleus (NMR Spectroscopy)Solvents (NMR Spectroscopy)Frequency (NMR Spectroscopy), MHz
Chemical shifts, Spectrum1Hchloroform-d1400
Chemical shifts, Spectrum13Cchloroform-d1101
NMR
Spin-spin coupling constants
Description (IR Spectroscopy)
IR

Route of Synthesis (ROS)

Route of Synthesis (ROS) of 1,3-BUTANESULTONE CAS# 3289-23-4
Route of Synthesis (ROS) of 1,3-BUTANESULTONE CAS# 3289-23-4
ConditionsYield
at 140℃; under 2 – 7 Torr; for 6h; Temperature; Pressure;83.1%
With strong basic resin at 130 – 140℃; under 1 – 10 Torr; Temperature; Pressure;81.2%

Safety and Hazards

Pictogram(s)skullhealth-hazard
SignalDanger
GHS Hazard StatementsH301+H311-H316-H320-H341-H350-H335
H301:Toxic if swallowed
H311:Toxic in contact with skin
H316:Causes mild skin irritation
H320:Causes eye irritation
H341:Suspected of causing genetic defects
H350:May cause cancer
H335:May cause respiratory irritation
Information may vary between notifications depending on impurities, additives, and other factors.
Precautionary Statement CodesP501-P261-P270-P202-P201-P271-P264-P280-P308+P313-P337+P313-P305+P351+P338-P361+P364-P332+P313-P301+P310+P330-P302+P352+P312-P304+P340+P312-P403+P233-P405
(The corresponding statement to each P-code can be found at the GHS Classification page.)

Other Data

TransportationNONH for all modes of transport
Under the room temperature and away from light
HS CodeNo data available
StorageUnder the room temperature and away from light
Shelf Life1 year
Market PriceUSD
Druglikeness
Lipinski rules component
分子量136.172
logP-0.326
HBA3
HBD0
Matching Lipinski Rules4
Veber rules component
Polar Surface Area (PSA)51.75
Rotatable Bond (RotB)0
Matching Veber Rules2
Use Pattern
Electrolyte Additive (Primary Application)
Widely used in lithium-ion battery electrolytes
Functions include:
Improving cycle performance
Enhancing the stability of the SEI (solid electrolyte interphase) film
Increasing high-temperature performance and overall safety
Fine Chemical Intermediate
Used in the synthesis of sulfonic acid derivatives
Acts as a sulfoalkylating agent to introduce –SO₃H functional groups
Pharmaceutical and Biochemical Applications
Utilized in the synthesis of certain pharmaceutical intermediates
Applied in biomaterial modification to introduce hydrophilic groups
Surfactants and Functional Materials
Used in the production of zwitterionic surfactants
Applied in:
Coatings
Oilfield chemicals
Water treatment agents

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