Ethyl 6,8-dichlorooctanoate丨CAS 1070-64-0

Ethyl 6,8-dichlorooctanoate丨CAS 1070-64-0
Product Introduction:
Catalog No.: SS130432
CAS No.: 1070-64-0
Purity(GC): 97.0%min
Product Name: Ethyl 6,8-dichlorooctanoate
Molecular Formula: C10H18Cl2O2
Molecular Weight: 241.15
Synonym(s): 6,8-Dichlorooctanoic acid ethyl ester
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Technical Parameters
Description

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Specifications

 

Appearance: Colourless to light yellow liquid
Purity(GC): 97.0%min
Identification by GC: Meets the requirements
Related substance:  
Single impurity: 2.0%max.
Total impurities: 3.0%max.

 

Transport Information

 

Parameter

Specification

UN Number

3082

Class

 

Packing Group

III

H.S. Code

2915900090309

Stability & Reactivity

The product is chemically stable under standard ambient conditions.

Storage

Keep container tightly closed in a dry and well-ventilated place. Containers which are opened must be carefully resealed and kept upright to prevent leakage.

Condition to Avoid

 

Package

 

 

Manufacturing Information

 

Parameter

Specification

Capacity

10MT/month

Frequency

 

Main Export Countries

 

Capacity/Batch

 

Experience

Production since 2017

Stock

 

 

 

 

Applications

1. Pharmaceutical Intermediate

Serves as an intermediate in the synthesis of bioactive molecules and pharmaceutical compounds, particularly those involving chlorinated fatty acid esters.

The dichlorinated chain introduces unique lipophilic and reactive properties for drug development.

2. Agrochemical Synthesis

Used in the synthesis of pesticides, herbicides, or insecticides due to its ability to mimic or interfere with fatty acid metabolism in pests.

Acts as a precursor to chlorinated aliphatic compounds with biological activity.

3. Specialty Organic Synthesis

Useful in the development of custom chlorinated esters for material science or polymer modification.

Plays a role in fine chemical synthesis requiring chain-functionalized halogenated esters.

4. Analytical Chemistry Research

Sometimes used in structure-activity relationship (SAR) studies to investigate the effects of halogen substitution on biological and chemical reactivity.

 

Benefits

1. Enhanced Reactivity

The presence of two chlorine atoms increases electrophilic reactivity, allowing for further transformations (e.g., nucleophilic substitution, coupling reactions).

2. Improved Lipophilicity

The fatty acid backbone enhances membrane permeability, beneficial in both drug development and agrochemical applications.

3. Versatile Functional Group Profile

Contains both ester and haloalkane functional groups:

Ester for hydrolysis, transesterification, or amidation

Chlorines for further derivatization or displacement reactions

4. Intermediate for Structural Modification

Acts as a scaffold for designing more complex molecules with fine-tuned properties, including toxicity modulation, lipid solubility, and target selectivity.

 

Conclusion

 

Ethyl 6,8-dichlorooctanoate (CAS 1070-64-0) is a niche yet valuable compound primarily used as an intermediate in the synthesis of pharmaceuticals, agrochemicals, and specialty organic molecules. Its dichlorinated fatty acid ester structure offers a versatile combination of chemical reactivity and lipophilic characteristics, making it suitable for modifying biologically active molecules or materials. With growing interest in halogenated building blocks in both medicinal and agricultural chemistry, this compound continues to hold relevance in advanced synthesis and formulation work.

 

 

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