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Azidotrimethylsilane

Base Information Edit
  • Chemical Name:Azidotrimethylsilane
  • CAS No.:4648-54-8
  • Deprecated CAS:150059-64-6,135108-15-5
  • Molecular Formula:C3H9N3Si
  • Molecular Weight:115.21
  • Hs Code.:29310095
  • European Community (EC) Number:225-078-5
  • UNII:EM57JSM2Y9
  • DSSTox Substance ID:DTXSID3063542
  • Nikkaji Number:J80.870I
  • Wikipedia:Trimethylsilyl_azide
  • Wikidata:Q2875204
  • Mol file:4648-54-8.mol
Azidotrimethylsilane

Synonyms:azidotrimethylsilane;Me3SiN3;trimethylsilyl azide

Suppliers and Price of Azidotrimethylsilane
Supply Marketing:Edit
Business phase:
The product has achieved commercial mass production*data from LookChem market partment
Manufacturers and distributors:
  • Manufacture/Brand
  • Chemicals and raw materials
  • Packaging
  • price
  • Usbiological
  • Azidotrimethylsilane
  • 10g
  • $ 340.00
  • TRC
  • Trimethylsilyl Azide
  • 10g
  • $ 65.00
  • TCI Chemical
  • Trimethylsilyl Azide >95.0%(GC)
  • 5g
  • $ 22.00
  • TCI Chemical
  • Trimethylsilyl Azide >95.0%(GC)
  • 25g
  • $ 73.00
  • TCI Chemical
  • Trimethylsilyl Azide >95.0%(GC)
  • 100g
  • $ 218.00
  • Sigma-Aldrich
  • Azidotrimethylsilane 95%
  • 50g
  • $ 251.00
  • Sigma-Aldrich
  • Trimethylsilyl azide for synthesis. CAS 4648-54-8, EC Number 225-078-5, chemical formula (CH ) SiN ., for synthesis
  • 8180260025
  • $ 113.00
  • Sigma-Aldrich
  • Trimethylsilyl azide for synthesis
  • 25 mL
  • $ 108.22
  • Sigma-Aldrich
  • Azidotrimethylsilane 95%
  • 10g
  • $ 86.50
  • Oakwood
  • Trimethylsilyl Azide 85%
  • 25g
  • $ 75.00
Total 99 raw suppliers
Chemical Property of Azidotrimethylsilane Edit
Chemical Property:
  • Appearance/Colour:clear colorless to slightly yellow liquid 
  • Melting Point:-95 °C 
  • Refractive Index:n20/D 1.415(lit.)  
  • Boiling Point:95-96 °C 
  • Flash Point:6 °C 
  • Density:0.876 g/mL at 20 °C 
  • Storage Temp.:Refrigerator 
  • Sensitive.:Moisture Sensitive 
  • Solubility.:Miscible with toluene, dichloromethane, diethyl ether and most o 
  • Water Solubility.:decomposes 
  • Hydrogen Bond Donor Count:0
  • Hydrogen Bond Acceptor Count:2
  • Rotatable Bond Count:1
  • Exact Mass:115.056573834
  • Heavy Atom Count:7
  • Complexity:97.2
Purity/Quality:

99% *data from raw suppliers

Azidotrimethylsilane *data from reagent suppliers

Safty Information:
  • Pictogram(s): FlammableF, ToxicT, Dangerous
  • Hazard Codes:F,T,N 
  • Statements: 11-23/24/25-50/53-29 
  • Safety Statements: 16-36/37/39-45-8-57-36/37-29 
MSDS Files:

SDS file from LookChem

Total 1 MSDS from other Authors

Useful:
  • Chemical Classes:Metals -> Metalloid Compounds (Silicon)
  • Canonical SMILES:C[Si](C)(C)N=[N+]=[N-]
  • Physical properties bp 95–96°C; n20 D 1.416; d 0.868 g cm?3; fp23°C; IR νmax 2100 cm?1; 1H NMR (CDCl3) δ = 0.22.
  • Uses Many applications of TMSA in organic synthesis have been reported but only representative examples are described herein.Substitution Reactions.Benzyl,allyl,and substituted alkyl halides are converted to the corresponding azides in 60–100% yields via reactions with TMSA under neutral conditions in a nonaqueous solvent (eq 1).By using tin(IV) chloride as a catalyst, secondary and tertiary cyclic and polycyclic halides are similarly transformed into the corresponding azides in 50–92% yields (eq 1). Trimethylsilyl azide is used as an azidonation reagent for amines, amides, aldehydes and ketones. It is involved in the preparation of alfa- and beta-siloxy azides from carbonyl compounds and epoxides. It is also used in the preparation of heterocyclic compounds and also acts as an effective substitute for hydrazoic acid. Further, it is used in the Oseltamivir total synthesis. Versatile azidonation reagent for amines, amides, aldehydes, and ketones.
Technology Process of Azidotrimethylsilane

There total 13 articles about Azidotrimethylsilane which guide to synthetic route it. The literature collected by LookChem mainly comes from the sharing of users and the free literature resources found by Internet computing technology. We keep the original model of the professional version of literature to make it easier and faster for users to retrieve and use. At the same time, we analyze and calculate the most feasible synthesis route with the highest yield for your reference as below:

synthetic route:
Guidance literature:
With polyethylene glycol; sodium azide; In silicon oil; at 59 ℃; for 2h; Product distribution / selectivity;
Guidance literature:
With sodium azide; at 150 ℃; for 0.166667h;
Guidance literature:
With sodium azide; at 150 ℃; for 0.166667h; other substrates, other reagents;
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