2,4-Dichloro-1-Hydroxy-Benzene

Linshang Chemical

Specifications

HS Code

874117

Chemical Formula C6H4Cl2O
Molar Mass 163.00 g/mol
Appearance White to off - white solid
Melting Point 43 - 45 °C
Boiling Point 210 - 212 °C
Solubility In Water Slightly soluble
Solubility In Organic Solvents Soluble in ethanol, ether, etc.
Density 1.49 g/cm³
Vapor Pressure Low vapor pressure
Odor Characteristic odor
Stability Stable under normal conditions

As an accredited 2,4-Dichloro-1-Hydroxy-Benzene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 250g of 2,4 - dichloro - 1 - hydroxy - benzene in a sealed chemical - grade plastic bottle.
Storage 2,4 - dichloro - 1 - hydroxy - benzene, also known as 2,4 - dichlorophenol, should be stored in a cool, dry, well - ventilated area. Keep it away from heat sources, open flames, and oxidizing agents. Store in a tightly - sealed container to prevent moisture absorption and evaporation. It should be separated from incompatible substances to avoid potential reactions.
Shipping 2,4 - dichloro - 1 - hydroxy - benzene is shipped in tightly sealed, corrosion - resistant containers. They are transported via approved chemical - hauling carriers, ensuring compliance with safety regulations during transit to prevent spills and environmental exposure.
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2,4-Dichloro-1-Hydroxy-Benzene 2,4-Dichloro-1-Hydroxy-Benzene
General Information
Where to Buy 2,4-Dichloro-1-Hydroxy-Benzene in China?
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Frequently Asked Questions

As a leading 2,4-Dichloro-1-Hydroxy-Benzene 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 2,4-dichloro-1-hydroxybenzene?
2% 2C4-difluoro-1-methoxybenzene is an extremely rare and unique organic compound. This compound has an outstanding position in the field of organic synthesis and is often used as a key intermediate. It has important applications in many fields such as medicine, pesticides and materials science.
In the field of medicine, due to its unique chemical structure and properties, it can be used to create new drugs. With precise modification and construction, or compounds with specific physiological activities and pharmacological properties can be obtained, opening up new paths for drug research and development. For example, through clever design, such compounds can be targeted to specific biological targets, improve drug efficacy, reduce adverse reactions, and bring hope to conquer difficult diseases.
In the field of pesticides, 2% 2C4-difluoro-1-methoxybenzene also performs well. With its special structure, high-efficiency, low-toxicity and environmentally friendly pesticide products can be developed. Its unique chemical activity may have strong inhibitory and killing effects on specific pests or pathogens, while reducing the adverse effects on non-target organisms and the environment, contributing to sustainable agricultural development.
In the field of materials science, this compound can be used as a basic raw material for the synthesis of materials with special properties. For example, through rational molecular design and polymerization, polymer materials with excellent electrical, optical or thermal properties may be prepared, which are useful in electronic devices, optical instruments and high-performance engineering materials.
2% 2C4-difluoro-1-methoxybenzene, with its unique chemical structure, plays an indispensable role in many frontier fields, injecting new vitality into scientific research and industrial production, and promoting the continuous development of related fields.
What are the physical properties of 2,4-dichloro-1-hydroxybenzene?
2% 2C4-difluoro-1-methoxybenzene is an organic compound. Its physical properties are particularly important and are related to many application fields.
This compound is mostly in a liquid state under normal temperature and pressure. Its boiling point is quite characteristic, about a certain temperature range. The boiling point depends on the intermolecular force. The fluorine atom and methoxy group in the molecule change the polarity of the molecule, which in turn affects the intermolecular interaction, causing its boiling point to be different from other benzene series compounds.
Looking at its melting point, it also has a specific value. The level of melting point is the result of the combination of the close arrangement of molecules and the interaction force. The spatial distribution of fluorine atoms and methoxy groups in this compound affects the way molecules are deposited, resulting in unique melting points.
As for density, it is also a significant physical property. Due to the molecular composition and structure, its density may be different from that of water or other common solvents. This density characteristic is of great significance in chemical operations such as extraction and separation.
Furthermore, its solubility cannot be ignored. In organic solvents such as ethanol and ether, it may have good solubility, which is due to the similar principle of miscibility. The polarity of the molecule is matched with the organic solvent, so that the molecule can be evenly dispersed. However, in water, due to its poor polarity matching with water molecules, the solubility may be limited.
In addition, the volatility of 2% 2C4-difluoro-1-methoxybenzene is also a consideration. Volatility is related to its diffusion rate in the environment, and is related to boiling point and vapor pressure. Lower boiling point and suitable vapor pressure, or cause it to be volatile, should be paid attention to when storing and using.
What are the chemical properties of 2,4-dichloro-1-hydroxybenzene?
2% 2C4-difluoro-1-methoxybenzene, this is an organic compound. Its chemical properties are unique and valuable for investigation.
From the structural point of view, there are methoxy and difluorine atoms attached to the benzene ring, which give it special properties. In terms of physical properties, at room temperature, it may be a colorless liquid with certain volatility and a unique odor. Due to the presence of fluorine atoms in the molecule, its relative density may be slightly higher than that of common benzene series compounds, and it has a certain lipid solubility and good solubility in organic solvents.
Chemically, methoxy groups are the power supply subgroups, which can increase the electron cloud density of the benzene ring and make the benzene ring more prone to electrophilic substitution reactions. For example, it can be alkylated with halogenated hydrocarbons under the action of appropriate catalysts, and alkyl groups are introduced at specific positions in the benzene ring. Fluorine atoms are extremely electronegative, which can reduce the electron cloud density of the benzene ring, but can enhance molecular stability. In nucleophilic substitution reactions, fluorine atoms can be used as leaving groups, but due to the high carbon-fluorine bond energy, this reaction condition is usually harsh. In addition, the compound can also participate in oxidation-reduction reactions. Under the action of specific oxidants, methoxy or benzene rings themselves may oxidize to form corresponding oxygenated compounds.
Furthermore, due to the fluorine atom, it has certain biological activity and may have potential applications in medicine, pesticides and other fields. For example, it can be used as a lead compound to develop new drugs or pesticides through structural modification and optimization.
What is the production method of 2,4-dichloro-1-hydroxybenzene?
The preparation of 2% 2C4-difluoro-1-methoxybenzene requires the preparation of suitable raw materials and specific steps.
The first benzene is taken as the starting material, and under specific reaction conditions, the benzene is electrophilically substituted with the fluorinated reagent. The choice of the fluorinated reagent should carefully consider its reactivity and selectivity. After this reaction, fluorinated benzene derivatives can be obtained. During the reaction, factors such as temperature, solvent and catalyst have a significant impact on the reaction process and the yield and purity of the product. If the temperature is not properly controlled, or the side reactions will increase, the quality of the product will be affected.
The obtained fluorobenzene derivative is then reacted with a methoxylating reagent to introduce methoxy groups. There are many types of methoxylating reagents, such as the combination of halogenated methane and sodium alcohol. This step also requires fine regulation of reaction conditions, such as reaction time, molar ratio of reactants, etc. If the reaction time is too short, or the methoxylation is incomplete; if the proportion of reactants is out of balance, it may also cause by-products to form.
During the entire preparation process, the separation and purification steps are also crucial. After the reaction is completed, the target product needs to be separated from the reaction mixture by suitable separation methods, such as distillation, extraction, column chromatography, etc. And when purifying, it is necessary to ensure that the purity of the product reaches the required standard, so as not to affect its subsequent application due to impurities.
In this way, after the rational operation and regulation of the above steps, 2% 2C4-difluoro-1-methoxybenzene can be obtained. However, in the actual preparation, it is still necessary to optimize and fine-tune each step according to the specific experimental conditions and requirements to achieve the ideal preparation effect.
What are the precautions for using 2,4-dichloro-1-hydroxybenzene?
2% 2C4-difluoro-1-methoxynaphthalene is a unique chemical substance. When it is used, many matters must not be ignored.
The first to bear the brunt is a matter of safety. This substance may be toxic and irritating to a certain extent, and it must be fully protected when it comes into contact. When handling this object, wear appropriate protective clothing, such as impermeable clothing, gloves, and goggles to prevent it from touching the skin and eyes and causing damage. If you accidentally touch it, rinse it with plenty of water quickly and seek medical attention as appropriate. Its volatile gas can not be inhaled, so the operation place, when well ventilated, is best in the fume hood for, if inhalation discomfort, also need to quickly leave the scene, seek medicine.
Furthermore, related to storage. It should be placed in a cool, dry and well ventilated place, away from fire and heat sources. Because of its flammability, in case of open flame, hot topic, there is a risk of explosion. And it needs to be stored separately from oxidants, acids, etc., must not be mixed with storage to prevent dangerous chemical reactions.
Repeat, during use, precise operation is essential. According to the specific requirements of the experiment or production, strictly control the dosage and reaction conditions. Temperature, pH, reaction time and other factors all have a great impact on the reaction result. A slight poor pool may cause the reaction to fail or generate harmful by-products.
In addition, after use, properly dispose of the remaining materials and waste. Do not dump at will, follow relevant environmental regulations and operating procedures, and carry out harmless treatment to avoid polluting the environment.
In general, when using 2% 2C4-difluoro-1-methoxynaphthalene, all matters such as safety, storage, operation and waste disposal need to be taken with caution to ensure safety.