2-Phenyl-1,3-thiazol-4-ol
4-Bromodibenzofuran (CAS 89827-45-2) is a halogenated aromatic intermediate used in the synthesis of functionalized heterocycles, OLED materials, pharmaceuticals, and agrochemicals. The bromine substituent at the 4-position makes this dibenzofuran derivative a valuable substrate for cross-coupling reactions (Suzuki, Stille, Negishi) and for introducing further functional groups through palladium-catalyzed processes. It is typically supplied as a solid crystalline powder with high purity to support sensitive downstream transformations.
KieRay Chem supplies 4-Bromodibenzofuran with rigorous quality control and packaging appropriate for moisture-sensitive and research-grade applications. Our stable supply chain and responsive technical support help customers integrate this intermediate into diverse synthetic routes. Choosing KieRay Chem means predictable availability, analytical documentation, and assistance to help manage scale-up and regulatory considerations. 4-Bromodibenzofuran is selected by formulators and purchasing teams that need dependable identity, consistent handling, and repeatable performance from batch to batch. KieRay Chem supports customers with responsive technical communication, careful document control, export-ready packing, and stable supply planning. Our team can coordinate specification confirmation, sample evaluation, production scheduling, and international logistics so that this CAS 89827-45-2 material is easier to qualify and reorder.
1. Acts as a versatile electrophilic building block for palladium-catalyzed cross-coupling reactions (e.g., Suzuki and Stille), enabling installation of diverse aryl and heteroaryl groups at the 4-position. It also helps users improve process consistency, manage production risk, and maintain predictable results across scale-up, routine manufacturing, and finished-product quality checks for 4-Bromodibenzofuran (CAS 89827-45-2).
2. Serves as a precursor in the synthesis of organic electronic and optoelectronic materials, where dibenzofuran cores contribute to rigidity and favorable photophysical properties. It also helps users improve process consistency, manage production risk, and maintain predictable results across scale-up, routine manufacturing, and finished-product quality checks for 4-Bromodibenzofuran (CAS 89827-45-2).
3. Useful in medicinal chemistry for rapid SAR exploration, allowing medicinal chemists to append functional motifs via palladium catalysis while retaining the dibenzofuran scaffold. It also helps users improve process consistency, manage production risk, and maintain predictable results across scale-up, routine manufacturing, and finished-product quality checks for 4-Bromodibenzofuran (CAS 89827-45-2).
4. Employed in the preparation of advanced intermediates for agrochemical and dye synthesis, where halogenated aromatic cores are required for subsequent derivatization. It also helps users improve process consistency, manage production risk, and maintain predictable results across scale-up, routine manufacturing, and finished-product quality checks for 4-Bromodibenzofuran (CAS 89827-45-2).
5. Supplied with batch-specific purity data and recommendations for inert handling to prevent debromination or oxidation during storage and processing. It also helps users improve process consistency, manage production risk, and maintain predictable results across scale-up, routine manufacturing, and finished-product quality checks for 4-Bromodibenzofuran (CAS 89827-45-2).
6. Available in scalable packaging to support both discovery and pilot-scale synthesis, facilitating smooth transfer from lab-scale routes to process development. It also helps users improve process consistency, manage production risk, and maintain predictable results across scale-up, routine manufacturing, and finished-product quality checks for 4-Bromodibenzofuran (CAS 89827-45-2).
Product Name: 2-Phenyl-1,3-thiazol-4-ol
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