CAS · 5070-13-3
Product Overview
Bis(4-nitrophenyl) carbonate is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance | Off-White to light yellow crystalline |
|---|---|
| Purity (HPLC) | 98.5% min. |
| Melting point | 137.0-144.0℃ |
Applications
Bis(4-nitrophenyl) carbonate is primarily used as a reactive intermediate in organic synthesis and polymer chemistry. It is commonly applied in the preparation of carbamate and urethane derivatives, which are important in pharmaceutical, agrochemical, and material science research. The compound is also utilized in the synthesis of protected amines and alcohols, facilitating controlled functionalization in multi-step reactions. In laboratory and industrial settings, it serves as a reagent for coupling reactions, crosslinking agents, and activation of hydroxyl and amine groups in the production of specialty chemicals, polymers, and resins. Additionally, it is employed in research to study reaction mechanisms, optimize synthetic pathways, and prepare functionalized intermediates for advanced material and drug development.
Benefits
The compound offers several advantages due to its high reactivity and well-defined structure. The nitrophenyl groups act as excellent leaving groups, enabling efficient and selective nucleophilic substitution reactions under mild conditions. Its solubility in common organic solvents allows for homogeneous reaction conditions and reproducible results. Bis(4-nitrophenyl) carbonate provides predictable reactivity, supporting high yields and controlled functionalization in both laboratory-scale and industrial processes. Additionally, its stability under appropriate storage conditions ensures consistent performance, making it a convenient and reliable reagent for synthetic chemists.
Conclusion
Bis(4-nitrophenyl) carbonate is a versatile intermediate used extensively in organic synthesis, polymer modification, and pharmaceutical research. Its applications in carbamate and urethane formation, coupled with benefits such as high reactivity, solubility, and reproducibility, make it an important tool for controlled functionalization and advanced material development. The compound continues to support efficient synthesis and innovation in chemical and pharmaceutical industries.
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