CAS · 998-41-4
Product Overview
Tributylsilane is a high-purity silicon-compounds supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance: | colorless liquid |
|---|---|
| Purity: | 98% min |
Applications
1. Hydrogen Atom Donor in Radical Chemistry
Tributylsilane is an effective hydrogen source in radical-mediated reactions, where it donates hydrogen atoms to radicals to terminate chain reactions or reduce intermediate species. Typical applications include:
Radical dehalogenation (removal of halides from alkyl or aryl halides)
Reductive cleavage of O–N and N–N bonds in protecting groups
Tin-free alternatives to tributyltin hydride (Bu₃SnH) in radical reactions due to lower toxicity
Advantages:
Milder and safer than tributyltin hydride
Compatible with a range of solvents and substrates
Forms non-toxic byproducts (siloxanes or silanols)
2. Reductive Deprotection Agent
Tributylsilane is often used for selective removal of protecting groups, especially those introduced during peptide synthesis or carbohydrate chemistry. Common deprotection reactions include:
Cleavage of benzyl or benzyloxycarbonyl (Cbz) groups
Desulfurization of thiols and thioethers
Reduction of sulfoxides and N-oxides
Used in combination with Lewis acids (e.g., TFA or BF₃·Et₂O), tributylsilane allows for efficient and selective deprotection under mild conditions.
3. Hydrosilylation Reactions
As a hydrosilane, tributylsilane can undergo hydrosilylation, adding across unsaturated carbon–carbon or carbon–heteroatom bonds:
Addition to alkenes or alkynes to form alkyl- or vinylsilanes
Catalyzed by transition metals (e.g., Pt, Rh, or Pd)
This is useful for synthesizing organosilicon compounds with tailored properties for materials, coatings, and electronic devices.
4. Reagent in Pharmaceutical Synthesis
Tributylsilane is employed in various active pharmaceutical ingredient (API) synthesis steps, particularly in:
Peptide coupling reactions, where it helps remove protecting groups or side products
Stereoselective synthesis, facilitating reactions without affecting sensitive functional groups
Macrocyclization or late-stage modifications requiring mild reduction
5. Silyl Source in Surface Chemistry
Though less common than other silanes, tributylsilane can be used in surface modification or as a precursor for silicon-containing materials. It introduces hydrophobic alkylsilicon surfaces that improve:
Moisture resistance
Surface energy control in coatings and films
Compatibility with organic polymers
Benefits
✅ Tin-Free Radical Chemistry
A safer alternative to organotin hydrides, which are highly toxic and environmentally persistent.
Tributylsilane avoids tin contamination in pharmaceutical or fine chemical synthesis.
✅ Mild and Selective Reductions
Efficient hydrogen donor in acid-sensitive molecules
Compatible with Lewis and Brønsted acids (e.g., TFA, BF₃, AlCl₃)
Functional group tolerance: preserves esters, ketones, ethers, and amides
✅ Low Toxicity and Easy Handling
Compared to tin hydrides, tributylsilane has a much better safety and environmental profile.
Low volatility and manageable odor make it easier to use in laboratory or pilot-scale processes.
✅ Applicable to a Broad Range of Substrates
Works with alkyl, aryl, alkenyl, and heteroaromatic systems
Used in complex natural product synthesis, medicinal chemistry, and agrochemical development
Conclusion
Tributylsilane (CAS 998-41-4) is a highly versatile and valuable reagent in modern synthetic chemistry, offering:
A non-toxic, tin-free radical hydrogen donor
A mild deprotection agent for complex molecule synthesis
Utility in hydrosilylation, pharmaceutical synthesis, and surface chemistry
Its combination of reactivity, selectivity, and safety makes it a go-to reagent in both research and industrial chemical processes.
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