1,3-Dichloro-2-Methoxybenzene

Linshang Chemical

Specifications

HS Code

482209

Chemical Formula C7H6Cl2O
Molar Mass 177.028 g/mol
Appearance Liquid (presumably, based on common similar compounds)
Solubility In Water Low solubility (aromatic ethers with halogens are generally sparingly soluble in water)
Solubility In Organic Solvents Soluble in common organic solvents like ethanol, ether, chloroform
Odor Chlorinated and aromatic odor (typical for such compounds)
Stability Stable under normal conditions, but may react with strong oxidizing agents

As an accredited 1,3-Dichloro-2-Methoxybenzene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 1,3 - Dichloro - 2 - methoxybenzene: Packed in 1 - kg bottles for chemical storage.
Storage 1,3 - Dichloro - 2 - methoxybenzene should be stored in a cool, dry, well - ventilated area, away from sources of heat, sparks, and open flames as it is potentially flammable. Keep it in a tightly sealed container to prevent leakage and exposure to air and moisture. Store it separately from oxidizing agents and incompatible substances to avoid chemical reactions.
Shipping 1,3 - Dichloro - 2 - methoxybenzene is shipped in well - sealed, corrosion - resistant containers. It adheres to strict hazardous chemical shipping regulations, ensuring proper handling to prevent leakage and maintain safety during transit.
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1,3-Dichloro-2-Methoxybenzene 1,3-Dichloro-2-Methoxybenzene
General Information
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Frequently Asked Questions

As a leading 1,3-Dichloro-2-Methoxybenzene supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

What are the main uses of 1,3-dichloro-2-methoxybenzene?
1% 2C3-dioxy-2-methylbenzyl oxide, this substance has a wide range of uses. In the field of medicine, it is a key intermediate in drug synthesis. For example, when synthesizing specific antibiotics, it can be used as a starting material to construct a complex molecular structure with antibacterial activity through a series of delicate chemical reactions, helping to fight against various bacterial infections and escort human health.
In the field of organic synthetic chemistry, its significance is extraordinary. Due to its unique chemical structure, it can participate in a variety of types of organic reactions, such as nucleophilic substitution, addition reactions, etc., providing the possibility for the synthesis of various complex organic compounds, helping chemists to create organic materials with novel structures and unique properties, and promoting the frontier development of organic synthetic chemistry.
In the field of fragrance industry, it also makes important contributions. It can be used as an important raw material for fragrance synthesis, giving unique flavor to fragrances, flavors and other products, and enhancing product quality and market competitiveness.
In pesticide manufacturing, 1% 2C3-dioxy-2-methoxybenzyl is also indispensable. With it as the basic raw material, pesticide products with high insecticidal and bactericidal properties can be synthesized, ensuring that crops are protected from pests and diseases, and ensuring agricultural harvests, which is of great significance to the sustainable development of agriculture.
What are the physical properties of 1,3-dichloro-2-methoxybenzene?
The physical properties of 1% 2C3-dioxy-2-methoxybenzyl are as follows:
This compound is often solid, and its melting properties are specific. From many studies, it can be known that its melting properties fall on a specific property. This melting property is also important for determining this substance and grasping its properties in different reactions.
Its external properties can also be described, usually in the shape of a specific color. This color is related to the properties of its molecules. Its color can be used as a basis for preliminary identification in some situations.
The density of this substance is also an important physical property. The density is obtained under specific conditions, and this value is useful in the operation and calculation of the volume and quantity of the phase, and can be used to precisely control the amount of the reaction substance.
Furthermore, its solubility cannot be ignored. In different dissolutions, this substance shows different degrees of solubility. In some dissolutions, it may show good solubility, but in water, the solubility may be different. This property is due to factors such as the density of its molecules, which plays an important role in the process of melting, lifting, etc.
Therefore, the physical properties of 1% 2C3-dioxy-2-methylbenzyl oxide, such as its melting, external properties, density, and solubility, are important for in-depth study of this substance and its application in various scenarios.
Is the chemical properties of 1,3-dichloro-2-methoxybenzene stable?
1% 2C3 + - + dioxy + - + 2 + - + methoxybenzene, the chemical properties of this substance are quite stable.
Looking at its structure, the presence of methoxy groups has an impact on the distribution of benzene ring electron clouds, making its chemical activity unique. Methoxy groups are the power supply groups, which can enhance the density of benzene ring electron clouds, and show a certain activity law in electrophilic substitution reactions.
In common chemical reaction environments, it can resist chemical changes under many mild conditions. For example, in a general acid-base solution, if there is no special catalyst or severe conditions, the structure of 1% 2C3 + - + dioxygen + - + 2 + - + methoxybenzene can be maintained stable, and it is not prone to hydrolysis, ring opening and other reactions.
However, it should be noted that although its stability is good, its stability will also be challenged when it encounters strong oxidizing agents or extreme conditions such as high temperature and high pressure. Strong oxidizing agents may promote oxidation reactions of benzene rings and destroy their conjugated structures; under high temperature and high pressure, reactions such as intramolecular rearrangement and cracking may be triggered. Overall, 1% 2C3 + - + dioxy + - + 2 + - + methoxybenzene is chemically stable in conventional chemical operation and storage environments, providing a good foundation for many organic synthesis and related applications. However, under special conditions, the boundaries of its stability also need to be scientifically considered and treated with caution.
What is the production method of 1,3-dichloro-2-methoxybenzene?
The preparation method of 1% 2C3-dioxy-2-methylbenzyl oxide is as follows:
To prepare this product, a specific organic synthesis path is often used. First take a suitable starting material, such as a compound containing a specific functional group. The raw material molecule can be introduced into a halogen atom through a halogenation reaction, and this halogen atom is a key activity check point in the subsequent reaction.
Next, a nucleophilic substitution reaction is performed. The nucleophilic reagent with a specific structure reacts with the halogenated raw material. The nucleophilic reagent attacks the carbon atom attached to the halogenated raw material, and the halogen leaves, thereby forming a new carbon-heteroatom bond to form a preliminary intermediate product.
Then the intermediate product is oxidized, and a suitable oxidizing agent is selected to precisely oxidize the specific functional groups to the desired oxidation state to shape some structural characteristics of dioxy-2-methylbenzyl oxide. The conditions of the oxidation reaction need to be precisely controlled, such as the reaction temperature, the amount of oxidant and the drip rate, which all have a great impact on the purity and yield of the product.
Then, the intramolecular cyclization reaction may be required. By adjusting the pH and temperature of the reaction system, the specific functional groups in the molecule interact and cyclize, and the cyclic structure of the target product is constructed to achieve the synthesis of 1% 2C3-dioxy-2-methylbenzyl oxide.
During the entire process, the fine regulation of reaction conditions, the sequencing of each step, and the separation and purification of intermediates are all key to obtaining high purity 1% 2C3-dioxy-2-methoxybenzyl. Each step requires chemists to rely on deep chemical knowledge and rich practical experience, and careful operation to successfully prepare this compound.
What are the precautions for storing and transporting 1,3-dichloro-2-methoxybenzene?
1% 2C3-dioxy-2-methoxybenzyl should pay attention to the following things during storage and transportation:
First, this material has specific chemical activity, and it must be stored in a dry, cool and well-ventilated place. If the humidity is high, it may cause moisture, which will cause chemical reactions and damage the quality. And high temperature will also have an adverse effect on its stability, so it should be controlled in a suitable temperature range to prevent deterioration.
Second, during transportation, it should be ensured that the packaging is intact. If the packaging of this substance is damaged or leaks, it will not only waste materials, but also endanger the safety of transportation personnel, or even pollute the surrounding environment. Be sure to use suitable packaging materials, such as containers with good sealing performance, to properly wrap and fix it securely to avoid packaging cracking caused by transportation bumps.
Third, because it may be dangerous, whether it is storage or transportation, it should be strictly operated in accordance with relevant safety procedures. Staff need to be professionally trained to be familiar with its characteristics and emergency treatment methods. Storage and transportation tools should be equipped with corresponding emergency equipment and protective equipment, such as fire extinguishers, protective gloves, gas masks, etc., to deal with emergencies.
Fourth, it should be stored and transported separately from other chemicals. Dangerous reactions may occur between different chemicals or due to interaction, so it must be strictly classified to avoid mixed storage and mixed transportation, and ensure the safety of storage and transportation.