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Exploring the Chemical Properties and Synthesis of 6-Chloro-1-tetralone

For chemists engaged in pharmaceutical synthesis, organic chemistry, and material science, a deep understanding of intermediate compounds is fundamental. 6-Chloro-1-tetralone (CAS 26673-31-4) stands out as a crucial building block, prized for its unique chemical properties and its utility in various synthetic pathways. This article explores its molecular characteristics and common synthesis approaches, highlighting its importance for researchers and manufacturers.

Our company, as a dedicated supplier and manufacturer, is committed to providing high-quality 6-Chloro-1-tetralone. We offer detailed insights into its chemical profile, ensuring that our clients have the information they need to effectively utilize this versatile intermediate. We are a prominent source for this chemical from China, supporting global R&D efforts.

Chemical Profile of 6-Chloro-1-tetralone

6-Chloro-1-tetralone, with the molecular formula C10H9ClO and a molecular weight of approximately 180.63 g/mol, possesses a structure that blends aromatic and aliphatic features with a reactive ketone group and a strategically placed chlorine atom. Its IUPAC name is 6-chloro-3,4-dihydro-2H-naphthalen-1-one. The presence of the chlorine atom on the aromatic ring influences its electronic properties and opens up possibilities for further functionalization through nucleophilic aromatic substitution or other related reactions.

Key chemical and physical properties often cited include:

  • Appearance: Typically presented as a white to yellow or orange powder or lump.
  • Melting Point: Around 53°C, indicating it is a solid at room temperature.
  • Boiling Point: Reported around 150°C at 0.7 mmHg, signifying its relative stability under vacuum distillation.
  • Solubility: Generally soluble in organic solvents like DMSO, but poorly soluble in water.

These properties are crucial for researchers when planning reaction conditions, purification steps, and storage protocols. When you purchase 6-Chloro-1-tetralone from us, you receive a product with these well-defined characteristics.

Synthesis Pathways for 6-Chloro-1-tetralone

The synthesis of 6-Chloro-1-tetralone typically involves multistep processes, often starting from readily available precursors. One common route involves the Sandmeyer reaction, where an amino-tetralone derivative is diazotized and then treated with copper(I) chloride to introduce the chlorine atom. Another approach might involve electrophilic aromatic substitution or cyclization reactions followed by chlorination. The specific route chosen by a manufacturer often depends on factors like precursor availability, desired purity, yield optimization, and cost-effectiveness.

As a professional chemical manufacturer, we have refined our synthesis processes to ensure a consistent and high-quality output of 6-Chloro-1-tetralone. Our expertise allows us to achieve excellent yields and purity levels, making us a reliable supplier for your chemical synthesis needs. We encourage you to buy 6-Chloro-1-tetralone from our facility to benefit from our process optimization.

Partnering with a Trusted Manufacturer

For procurement managers and R&D scientists, sourcing this intermediate requires confidence in the supplier. Our company stands as a testament to reliability, offering comprehensive technical data and support. We understand the nuances of chemical synthesis and are committed to providing the highest grade of 6-Chloro-1-tetralone. We invite you to request a quote and explore how our capabilities can support your projects.

In summary, understanding the chemical properties and synthesis methods of 6-Chloro-1-tetralone (CAS 26673-31-4) is vital for its effective utilization. As a premier manufacturer and supplier from China, we are dedicated to providing researchers with this essential intermediate of exceptional quality. Contact us today to buy 6-Chloro-1-tetralone and elevate your chemical synthesis endeavors.

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