3,4-Dichlorotoluene

3,4-Dichlorotoluene: A Practical Raw Material for Chemical Synthesis

  • Sep 04

For chemical manufacturers, the value of a raw material often starts with how much of the required molecular structure is already in place. 3,4-Dichlorotoluene offers a specific substituted aromatic structure, combining a methyl group with two chlorine atoms on the benzene ring. For processes that require this particular arrangement, it can be used directly as a starting material rather than building the same substitution pattern from a simpler aromatic compound.

With CAS No. 95-75-0, 3,4-Dichlorotoluene is available as a defined chemical raw material for customers involved in organic synthesis, intermediate production, and other chemical manufacturing processes.

A Specific Structure for Further Manufacturing

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3,4-Dichlorotoluene has the molecular formula C7H6Cl2 and a molecular weight of 161.03 g/mol. Its structure contains a methyl group together with chlorine substituents at the 3 and 4 positions of the aromatic ring.

That specific arrangement is the reason customers may look for 3,4-Dichlorotoluene rather than a general dichlorotoluene product. When a downstream product requires this substitution pattern, starting with the corresponding isomer provides a more direct route into the desired aromatic framework.

In other words, the customer is not simply purchasing a compound that contains chlorine. They are purchasing a pre-defined aromatic structure that can be carried into the next stage of production.

From 3,4-Dichlorotoluene to Higher-Value Intermediates

3,4-Dichlorotoluene is used as a chemical intermediate and can serve as a starting material for further chemical processing. Commercial references identify applications in the production of pharmaceutical and agrochemical intermediates, while other industrial information describes its use in chemical manufacturing and as a high-boiling aromatic material.

Its usefulness comes from the combination of three features within one relatively simple molecule: an aromatic ring, a methyl substituent, and two chlorine substituents.

For manufacturers developing substituted aromatic compounds, this gives 3,4-Dichlorotoluene a practical role as an input material for subsequent transformations. The exact downstream reaction depends on the target product and process conditions, but the starting structure is already established before synthesis begins.

The 3,4-Isomer Makes the Difference

There are several dichlorotoluene isomers, and their molecular formulas do not tell the whole story.

For a customer specifically requiring 3,4-Dichlorotoluene, the position of the two chlorine atoms is part of the product specification. A different dichlorotoluene isomer may contain the same elements and have the same molecular weight, but it does not provide the same aromatic structure.

This is particularly important when the material is going directly into another synthesis step. Selecting the correct isomer at the purchasing stage helps avoid introducing the wrong aromatic structure into the downstream process.

For this reason, CAS No. 95-75-0 should be used when specifying 3,4-Dichlorotoluene in purchasing documents and technical communications.

Product Specifications at a Glance

Property

Reference Value

Product Name

3,4Dichlorotoluene

CAS No.

95-75-0

Molecular Formula

C₇H₆Cl₂

Molecular Weight

161.03 g/mol

Appearance

Liquid

Boiling Point

Approx. 200.5 °C

Density

Approx. 1.25 g/mL

Reference data from Sigma-Aldrich list a boiling point of 200.5 °C at 741 mmHg and a density of 1.251 g/mL at 25 °C. Commercial grades can have different specification limits, so the applicable product specification should always be confirmed before purchase.

A Product Specification Worth Checking Before Purchase

For 3,4-Dichlorotoluene, purchasing decisions should go beyond the product name.

Customers sourcing the material for synthesis or manufacturing should normally confirm the required assay or GC purity, the level of related dichlorotoluene isomers, appearance, and other specification limits relevant to their process.

A batch-specific COA can be used to verify the supplied material against the agreed specification, while the SDS provides the applicable information for handling, storage, transportation, and environmental precautions. Supplier safety documentation classifies 3,4-Dichlorotoluene as a combustible liquid and identifies aquatic hazards.

The required purity level should also be determined by the customer’s application. A laboratory synthesis, process-development project, and larger-scale manufacturing process may not require exactly the same specification.

Source 3,4-Dichlorotoluene from Snowhite Chemical

If you are sourcing 3,4-Dichlorotoluene CAS 95-75-0 for chemical synthesis or manufacturing, the most important starting point is having the correct isomer and a specification that matches your process requirements.

Snowhite Chemical Co., LTD. supplies 3,4-Dichlorotoluene for customers looking for this specific aromatic raw material. Contact us for current product specifications, available packaging, quantity requirements, and a quotation.

Whether you are purchasing for laboratory development or commercial chemical production, we can discuss your required specification and supply requirements for 3,4-Dichlorotoluene.

Contact Us

Contact SNOWHITE CHEMICAL CO., LTD now to get COA, free samples and the latest quotation.

Email: shirley@snowhitechem.com

Phone: +86-25-56215758

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