High Purity 1-(Triisopropylsilyl)-1H-pyrrole (CAS 87630-35-1): Your Trusted Pharmaceutical Intermediate Manufacturer & Supplier

Discover the superior quality and reliability of 1-(Triisopropylsilyl)-1H-pyrrole (CAS 87630-35-1), a key pharmaceutical intermediate essential for advanced organic synthesis. As a leading manufacturer and supplier, we offer high purity materials to drive your research and production goals.

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Key Advantages of Our 1-(Triisopropylsilyl)-1H-pyrrole

Superior Chemical Purity

Achieve superior outcomes in your organic synthesis with our 1-(Triisopropylsilyl)-1H-pyrrole, boasting a guaranteed purity of 99% min. This ensures minimal interference and maximum efficacy in complex chemical reactions.

Reliable Supply Chain

As a leading manufacturer and supplier, we guarantee a consistent and dependable supply of CAS 87630-35-1. Our robust production capabilities ensure you can buy with confidence for your ongoing projects.

Cost-Effective Sourcing

Leverage our competitive pricing for 1-(Triisopropylsilyl)-1H-pyrrole. We are committed to providing high-quality pharmaceutical intermediates at an optimal price point for our global clientele.

Applications and Use Cases

Advanced Organic Synthesis

Utilize this pyrrole derivative as a key building block in intricate organic synthesis pathways, particularly for novel pharmaceutical compounds. Explore how to buy this essential reagent for your custom synthesis needs.

Pharmaceutical R&D

Invaluable for researchers in drug discovery and development. This intermediate's specific structure aids in creating novel therapeutic agents, making it a vital component for any pharma R&D supplier.

Heterocyclic Chemistry

A fundamental reagent for chemists specializing in heterocyclic compounds. Its unique silyl protection offers selective reactivity, facilitating complex transformations and access to diverse heterocyclic scaffolds.

Material Science Research

Beyond pharmaceuticals, this compound can find applications in advanced material science due to its specific molecular structure, offering potential for novel functional materials. Discover its potential as a specialty chemical.