

share
4,4-Dibutyl-1,3-Dioxa-2-Thia-4-Stannacyclobutane 2,2-Dioxide CAS NO 22709-76-8
Unit Price:
CAS No.:22709-76-8
Grade:Pharmacy Grade
Content:99.9%
Brand:Customizable
Packaging:Customizable
Description
4,4-Dibutyl-1,3-dioxa-2-thia-4-stannacyclobutane 2,2-dioxide is a specialized organotin compound featuring a unique heterocyclic structure. This chemical is valued for its role as a versatile intermediate and catalyst in advanced synthetic chemistry, particularly in polymer science and materials research. It is primarily sought by R&D laboratories and industrial manufacturers in the polymer additives, specialty chemicals, and advanced material sectors.
Application
- Polymer Additive Precursor: Serves as a key intermediate in the synthesis of organotin-based heat stabilizers for PVC and other halogenated polymers.
- Catalysis: Acts as a catalyst or co-catalyst in specific organic synthesis reactions, including transesterification and condensation polymerizations.
- Material Science Research: Used in the development of novel tin-containing materials, such as metal-organic frameworks (MOFs) or hybrid inorganic-organic polymers.
- Surface Modifying Agent: Employed to impart specific surface properties or functionality to inorganic substrates like glass or metal oxides.
- Specialty Chemical Intermediate: Provides a functionalized organotin building block for the synthesis of more complex molecules in pharmaceutical or agrochemical research.
Basic Information
| Product Name | 4,4-Dibutyl-1,3-dioxa-2-thia-4-stannacyclobutane 2,2-Dioxide |
| CAS No. | 22709-76-8 |
| Molecular Formula | C10H20O4SSn |
| Molecular Weight | 346.99 g/mol |
| Synonyms | 4,4-Dibutyl-2,2-dioxo-1,3,2λ4,4λ4-dioxathiasiletane; Dibutyltin Sulfate Cyclic Ester; 1,3,2λ4,4λ4-Dioxathiasiletane, 4,4-dibutyl-2,2-dioxide; Stannacyclobutane derivative; Organotin sulfate cyclic ester; Tin heterocycle |
| EINECS | Contact for details |
Quality Control
Our production of 4,4-Dibutyl-1,3-dioxa-2-thia-4-stannacyclobutane 2,2-dioxide adheres to stringent quality management protocols. Each batch undergoes comprehensive analytical testing, including assay, identification, and impurity profiling, to ensure high purity and batch-to-batch consistency. A Certificate of Analysis (COA) detailing all specifications is provided with every shipment.
Storage
Preserve in a tightly closed container, protected from light. Store in a cool, dry, and well-ventilated area at room temperature (15-25°C). Keep away from incompatible materials such as strong oxidizing agents.
Specification
| Item | Specification |
|---|---|
| Appearance | White to off-white solid |
| Identification (IR) | Conforms to structure |
| Assay (HPLC) | ≥ 95.0% |
| Tin (Sn) Content | 34.0 - 35.0 % |
Note: Specifications can be tailored. Please contact us for the detailed technical data sheet of a specific grade.
Hot Related Products


Dimethyldineodecanoatetin CAS NO 68928-76-7


Hexamethyldistannane CAS NO 661-69-8


Chlorotriphenyltin CAS NO 639-58-7


Bis(Tributyltin) Oxide CAS NO 56-35-9


Bis(Lauroyloxy)Dioctyltin CAS NO 3648-18-8


Butylchlorodihydroxytin CAS NO 13355-96-9


Trimethyltin Chloride CAS NO 1066-45-1


Trimethyltin Hydroxide CAS NO 56-24-6


Tributyltin Hydride CAS NO 688-73-3


Divinyltin Dichloride CAS NO 7532-85-6


Dimethyldi(Butylthio) Tin(Iv) CAS NO 1000-40-4


Di-n-Butyltin CAS NO 1002-53-5


Trimethyl(Pentafluorophenyl)Stannane CAS NO 1015-53-8


Dibutylbis(Pentafluorophenyl)Stannane CAS NO 1059-35-4


Diphenylbis(Pentafluorophenyl)Stannane CAS NO 1062-67-5


Methyltris(Pentafluorophenyl)Stannane CAS NO 1062-71-1


Hexaphenylditin(Iv) CAS NO 1064-10-4


Tetrakis(Pentafluorophenyl)Stannane CAS NO 1065-49-2


Trimethyltin Bromide CAS NO 1066-44-0


Aethylzinntrichlorid [German] CAS NO 1066-57-5
Why choose US
Trusted Manufacturer
With our own production facilities, we ensure consistent quality, reliable supply, and full traceability.
Rigorous Quality Assurance
Each batch undergoes strict QC, accompanied by COA, MSDS, and full compliance with international standards.
Advanced R&D Expertise
Our in-house lab drives process innovation, new product development, and tailored synthesis solutions.






