CAS · 1907-33-1
Product Overview
Lithium tert-butoxide is a high-purity catalysts-auxiliary-agent supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance | White or light yellow powder |
|---|---|
| Content | 99.0% min |
| Free Alkali | 0.5% max |
| Free Ethanol | 0.05% max |
| Ca | 0.005% max |
| Pb | 0.004% max |
| Na | 0.005% max |
| Iron | 0.005% max |
| Cl | 0.005% max |
Applications
Organic Synthesis and Catalysis
Lithium tert-butoxide丨1907-33-1 is a strong non-nucleophilic base widely used in organic synthesis, particularly in deprotonation reactions, alkylations, and elimination reactions. It is essential in the preparation of enolates, which serve as key intermediates in the synthesis of pharmaceuticals, agrochemicals, and fine chemicals.
Pharmaceutical Industry
Lithium tert-butoxide丨1907-33-1 is employed in drug synthesis for selective base-mediated transformations, including the formation of heterocycles and complex organic scaffolds used in active pharmaceutical ingredients (APIs).
Polymer and Material Science
Lithium tert-butoxide plays a role in polymerization reactions and material modifications, particularly in the synthesis of specialty polymers with tailored properties such as improved stability and reactivity.
Catalyst and Ligand Preparation
It is used in the synthesis of lithium-based catalysts and ligands that enhance reaction selectivity and efficiency in metal-catalyzed transformations.
Battery and Energy Storage Research
Lithium tert-butoxide is investigated for its potential applications in lithium-ion battery electrolytes and energy storage materials, particularly in research aimed at improving lithium-ion conductivity and electrode performance.
Benefits
Strong, Non-Nucleophilic Base
Its sterically hindered structure makes it an excellent base for selective deprotonation and elimination reactions without unwanted side reactions.
Enhances Reaction Efficiency
As a catalyst or reagent, it improves yields and selectivity in organic synthesis, reducing the need for excess reagents and harsh conditions.
Versatile in Industrial and Academic Research
It is used in a wide range of applications, from pharmaceuticals and fine chemicals to material science and battery research.
Facilitates the Synthesis of Complex Molecules
Its ability to generate enolates and other reactive intermediates makes it indispensable in the preparation of bioactive compounds and advanced materials.
Conclusion
Lithium tert-butoxide丨1907-33-1 is a highly reactive and selective base with applications in organic synthesis, pharmaceuticals, materials science, and emerging battery technologies. Its role in facilitating key chemical transformations makes it a valuable tool for industrial and academic research.
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