Cas no 180336-92-9 (Borane Oxazole Complex)

The Borane Oxazole Complex is a highly reactive ligand system, renowned for its exceptional catalytic performance. It offers a versatile platform for organic synthesis, facilitating the formation of carbon-boron bonds with high selectivity. This complex's unique structure enhances its stability and efficiency, making it a preferred choice in the development of novel organic molecules.
Borane Oxazole Complex structure
Borane Oxazole Complex structure
Product Name:Borane Oxazole Complex
CAS No:180336-92-9
MF:C3H6BNO
MW:82.8968405723572
MDL:MFCD32066993
CID:4776631
Update Time:2026-02-26

Borane Oxazole Complex Chemical and Physical Properties

Names and Identifiers

    • Borane Oxazole Complex
    • MDL: MFCD32066993
    • Inchi: 1S/C3H3NO.BH3/c1-2-5-3-4-1;/h1-3H;1H3
    • InChI Key: IBHOPHUUVQOHCC-UHFFFAOYSA-N
    • SMILES: C1OC=NC=1.B

Borane Oxazole Complex Pricemore >>

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Additional information on Borane Oxazole Complex

Introduction to the Borane Oxazole Complex (CAS No. 180336-92-9)

The Borane Oxazole Complex, identified by the chemical identifier CAS No. 180336-92-9, is a specialized compound that has garnered significant attention in the field of chemical and pharmaceutical research. This complex is particularly notable for its unique structural properties and its potential applications in various scientific domains, including medicinal chemistry and materials science. The combination of borane with oxazole creates a molecule that exhibits intriguing reactivity and stability, making it a subject of extensive study.

In recent years, the Borane Oxazole Complex has been explored for its role in the development of novel pharmaceutical agents. Borane derivatives are well-known for their ability to act as ligands and catalysts, facilitating various organic transformations. The oxazole moiety, on the other hand, is a heterocyclic compound that possesses bioactive properties, making it a valuable component in drug design. The synergy between these two functional groups in the Borane Oxazole Complex opens up new possibilities for creating innovative therapeutic solutions.

One of the most compelling aspects of the Borane Oxazole Complex is its potential application in the synthesis of complex organic molecules. Researchers have leveraged its unique chemical properties to develop efficient synthetic routes for a variety of target compounds. For instance, the borane moiety can participate in cross-coupling reactions, while the oxazole ring can serve as a scaffold for further functionalization. This dual functionality makes the Borane Oxazole Complex an invaluable tool in synthetic organic chemistry.

Recent studies have also highlighted the Borane Oxazole Complex's role in materials science. The compound's ability to form stable complexes with other molecules has led to its use in the development of advanced materials with tailored properties. These materials have potential applications in areas such as catalysis, sensors, and electronic devices. The precise control over molecular structure afforded by the Borane Oxazole Complex allows researchers to design materials with specific functionalities, enhancing their performance and utility.

The pharmaceutical industry has been particularly interested in the therapeutic potential of the Borane Oxazole Complex. Preclinical studies have demonstrated that derivatives of this compound exhibit promising biological activity against various targets. For example, modifications to the borane and oxazole moieties have yielded compounds with anti-inflammatory, antimicrobial, and anticancer properties. These findings underscore the importance of the Borane Oxazole Complex as a building block for drug discovery efforts.

The synthesis of the Borane Oxazole Complex (CAS No. 180336-92-9) involves carefully controlled reactions to ensure high yield and purity. Advanced synthetic techniques are employed to introduce functional groups at specific positions on the molecule, enabling further modifications. The process often requires specialized equipment and expertise to achieve optimal results. Despite these challenges, the growing interest in this compound underscores its significance in modern chemical research.

In conclusion, the Borane Oxazole Complex represents a fascinating intersection of boron chemistry and heterocyclic pharmacology. Its unique properties make it a versatile tool for synthetic chemists and pharmaceutical researchers alike. As our understanding of its chemical behavior continues to evolve, so too will its applications across multiple scientific disciplines. The ongoing exploration of this compound promises to yield new insights and innovations that will shape the future of chemical and biomedical research.

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