4-Chloro-1-Benzothiophene: A Key Pharmaceutical Intermediate and Its Chemical Properties

Explore the essential role of 4-Chloro-1-Benzothiophene in pharmaceutical synthesis, focusing on its chemical properties and applications as a vital intermediate for Brexpiprazole and beyond.

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Advantages Brought by the Product

Key Intermediate for Brexpiprazole Synthesis

As a vital component in the Brexpiprazole synthesis pathway, understanding its chemical properties is crucial for manufacturers seeking efficient production and reliable impurity profiles. This makes it a sought-after compound for pharmaceutical development.

Versatile Organic Synthesis Building Block

The inherent reactivity and structural features of 4-Chloro-1-Benzothiophene make it an excellent organic synthesis building block, enabling the creation of diverse heterocyclic compounds with potential applications in agrochemicals and material science.

High Purity and Consistent Quality

Our commitment to quality ensures that 4-Chloro-1-Benzothiophene is supplied at high purity levels (>=98%), guaranteeing consistent performance and reliability in sensitive chemical reactions and demanding industrial processes.

Key Applications

Pharmaceutical Synthesis

The compound's primary application as a pharmaceutical intermediate, particularly for Brexpiprazole, underscores its importance in modern medicine development. Its specific structure facilitates key chemical transformations required in drug manufacturing.

Organic Chemistry Research

As a valuable organic synthesis building block, researchers utilize 4-Chloro-1-Benzothiophene to explore new reaction pathways and create novel molecular architectures for various scientific endeavors.

Agrochemical Development

The benzothiophene derivative structure presents opportunities for use in the development of new agrochemicals, contributing to advancements in crop protection and pest management solutions.

Advanced Materials Science

Its chemical properties make it a candidate for integration into advanced materials, potentially leading to the creation of new polymers or functional coatings with unique characteristics.