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Formylthiazole

Updated: 2026-07-17

Overview

Formylthiazole is an organic compound derived from thiazole, characterized by a formyl functional group attached to the heterocyclic ring. It serves as a versatile intermediate in the synthesis of pharmaceuticals and agrochemicals due to its reactive aldehyde group and aromatic structure. The compound is typically supplied as a colorless to pale yellow liquid and must be handled with care due to its irritant properties. Its significance in organic synthesis stems from the ability to undergo further chemical transformations, such as condensation or reduction reactions, making it valuable for constructing complex molecules. Industrial demand is driven by its role in producing active pharmaceutical ingredients (APIs) and crop protection agents.

Physical and Chemical Properties

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Formylthiazole has a molecular weight of 113.14 g/mol and is soluble in common organic solvents like ethanol, acetone, and dichloromethane. The formyl group (-CHO) at the 4-position of the thiazole ring enhances its reactivity, enabling participation in nucleophilic addition reactions. While specific melting and boiling points are not widely documented, the compound is stable under recommended storage conditions but may degrade upon prolonged exposure to air or moisture. The aromatic thiazole core contributes to its stability and influences electronic properties, which are exploited in coordination chemistry and material science applications. Analytical methods such as NMR and IR spectroscopy are typically used to confirm its structure and purity.

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Main Applications

In the pharmaceutical industry, formylthiazole is a key building block for synthesizing thiazole-containing drugs, including antivirals and antibiotics. Its formyl group allows for facile derivatization, enabling the creation of Schiff bases or heterocyclic extensions. Agrochemically, it is utilized in the production of fungicides and herbicides, where the thiazole moiety enhances bioactivity. Beyond these sectors, the compound finds niche uses in material science, particularly in the development of conductive polymers or ligands for metal-organic frameworks (MOFs). Research applications often focus on its role in multicomponent reactions to generate libraries of bioactive compounds.

Safety and Storage

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Formylthiazole is classified as an irritant, requiring handling with gloves, goggles, and adequate ventilation. Direct contact with skin or eyes may cause inflammation, and inhalation of vapors should be avoided. Spills must be contained with inert absorbents and disposed of as hazardous waste. Storage recommendations include keeping the compound in a tightly sealed container under inert gas (e.g., nitrogen) to prevent oxidation. Temperature-controlled environments (2–8°C) are advised for long-term stability. Compatibility with common lab materials like glass and stainless steel ensures safe transport and processing.

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B2B Procurement Guide

When sourcing formylthiazole, prioritize suppliers with ISO certification and batch-specific certificates of analysis (CoA). Key parameters to verify include purity (≥98% by HPLC), water content, and residual solvents. Bulk buyers should negotiate contracts with flexible delivery terms, as demand fluctuates with R&D cycles in pharmaceuticals. For international procurement, consider incoterms (e.g., CIF or DDP) to manage logistics costs. Sample testing is recommended to confirm consistency, especially for GMP-grade material. Establish contingency plans with alternate suppliers to mitigate supply chain disruptions.

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