2-Chloro-Alpha-Hydroxybenzeneacetic Acid

Linshang Chemical

Specifications

HS Code

129451

Chemical Formula C8H7ClO3
Molar Mass 186.59 g/mol
Appearance Solid (usually white or off - white)
Solubility In Water Slightly soluble
Solubility In Organic Solvents Soluble in some organic solvents like ethanol, acetone
Melting Point Typically in a certain range (exact value may vary depending on purity)
Density A specific density value depending on the form
Acidity Weakly acidic due to the carboxylic acid group
Chirality May have chiral centers, can exist as enantiomers

As an accredited 2-Chloro-Alpha-Hydroxybenzeneacetic Acid factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 250g of 2 - chloro - α - hydroxybenzeneacetic Acid packaged in a sealed plastic bag.
Storage 2 - chloro - α - hydroxybenzeneacetic acid should be stored in a cool, dry place away from direct sunlight. Keep it in a well - sealed container to prevent moisture absorption and contamination. Store it separately from incompatible substances like strong oxidizing agents. This storage approach helps maintain its chemical integrity and safety.
Shipping 2 - chloro - α - hydroxybenzeneacetic acid is shipped in accordance with chemical regulations. It's carefully packaged in suitable containers to prevent leakage. Shipment is via approved carriers, ensuring safety during transit.
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2-Chloro-Alpha-Hydroxybenzeneacetic Acid 2-Chloro-Alpha-Hydroxybenzeneacetic Acid
General Information
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Frequently Asked Questions

As a leading 2-Chloro-Alpha-Hydroxybenzeneacetic Acid 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 chemical properties of 2-chloro-alpha-hydroxybenzeneacetic Acid?
2-Chloro - α - hydroxyphenylacetic acid is an organic compound. Due to its acidic nature and carboxyl group (-COOH), it can partially ionize hydrogen ions in water, which can neutralize with bases to form corresponding salts and water.
This compound contains chlorine atoms, which are highly active and can participate in various substitution reactions. Under appropriate conditions, chlorine atoms can be replaced by other atoms or groups, such as hydroxyl groups, amino groups, etc., and then other compounds can be derived.
α-hydroxy is also an active group, which can participate in oxidation reactions and can be oxidized to carbonyl groups. At the same time, the hydroxyl group can undergo dehydration and condensation reaction with other compounds containing active hydrogen to form esters or ether compounds.
Because of its benzene ring structure, it is aromatic and can undergo electrophilic substitution reactions on the benzene ring, such as halogenation, nitrification, sulfonation, etc., introducing other groups at specific positions in the benzene ring.
2-Chloro - α - hydroxyphenylacetic acid Due to the characteristics of various groups it contains, it shows a variety of chemical reactivity and is widely used in the field of organic synthesis. It can be used as an intermediate for the synthesis of drugs, pesticides and other fine chemicals.
What are the common uses of 2-chloro-alpha-hydroxybenzeneacetic Acid?
2-Chloro - α - hydroxyphenylacetic acid, this is an organic compound. Its common uses are many, let me tell you one by one.
In the field of medicine, its use is quite critical. It can be used as an important intermediate for the synthesis of a variety of drugs. For example, some drugs with antibacterial and anti-inflammatory effects, in the synthesis process, 2-chloro - α - hydroxyphenylacetic acid plays an indispensable role. Because of its specific chemical structure, it can participate in many reactions, build the complex molecular structure required for drugs, and help drugs achieve the desired therapeutic effect.
In the field of organic synthesis, it is also an extremely important raw material. With its unique functional groups, it can participate in esterification reactions, substitution reactions and many other organic reactions. By ingeniously designing the reaction path, it can be used to prepare a series of organic compounds with different structures, expand the diversity of organic synthesis, and lay the foundation for the research and development of new materials and fine chemicals.
In the field of chemical production, it also has its uses. It can be used to produce specific types of fragrances and additives. In the production of fragrances, it is transformed through specific reactions to give the fragrance a unique aroma; in the production of additives, it can improve the specific properties of the product, such as improving the stability and oxidation resistance of certain materials.
In summary, although 2- - α - hydroxyphenylacetic acid is an organic compound, it has shown important uses in many fields such as medicine, organic synthesis, chemical production, etc., and plays a role in promoting the development of related industries.
What is the synthesis method of 2-chloro-alpha-hydroxybenzeneacetic Acid?
The synthesis method of 2-chloro - α - hydroxyphenylacetic acid, although the ancient book "Tiangong Kaiwu" does not directly describe this, it can be synthesized according to the chemical principle and wisdom contained in it.
To make 2-chloro - α - hydroxyphenylacetic acid, benzaldehyde can be used as the starting material. In a suitable reactor, add an appropriate amount of benzaldehyde, followed by a specific catalyst, and pass chlorine gas. The reaction of chlorine and benzaldehyde needs to be controlled at a moderate temperature, not too dramatic or too slow. This step aims to introduce chlorine atoms at a specific position in the benzene ring to obtain chlorine-containing benzaldehyde derivatives.
Then, the obtained chlorobenzaldehyde derivative meets a suitable oxidizing agent. The choice of this oxidizing agent needs to be careful, which not only promotes the oxidation of the aldehyde group to the carboxyl group, but also does not damage the structure of the chlorine atom and benzene ring. The reaction environment also needs to be carefully controlled, such as pH and temperature, so that the aldehyde group can be smoothly converted into carboxyl groups to form chlorine-containing phenylacetic acids.
Then, the chlorine-containing phenylacetic acid is reacted with the hydroxylating reagent. The amount of this reagent added, the reaction time and temperature are all critical. The hydroxylating reagent is slowly added, fully blended with the chlorophenylacetic acid-containing substances, and the hydroxyl group is successfully introduced at the α-position. This process may require the assistance of specific organic solvents to increase the solubility of the reactants and the uniformity of the reaction.
After the reaction is completed, various separation and purification methods, such as distillation, recrystallization, extraction, etc., are used to remove impurities and extract the purity of the product, and finally obtain 2-chloro - α - hydroxyphenylacetic acid.
Although the synthesis of this compound is not detailed in "Tiangong Kaiji", its concept of ingenious transformation of natural substances and fine regulation of reaction conditions has also inspired the synthesis of 2-chloro - α - hydroxyphenylacetic acid today.
2-chloro-alpha-hydroxybenzeneacetic Acid in storage and transportation
2-Chloro - α - hydroxyphenylacetic acid, this is an organic compound. When storing and transporting, many things need to be paid attention to.
The first thing to bear the brunt, when storing, should choose a cool, dry and well-ventilated place. Because the substance may be sensitive to heat, high temperature can easily cause its properties to change, or even cause decomposition and other undesirable conditions. If placed in a humid place, it is prone to moisture and deterioration, affecting its quality and stability.
Furthermore, because of its certain chemical activity, it must be stored away from fire and heat sources. The genus of fireworks can easily ignite or detonate the compound, resulting in serious safety accidents.
When transporting, it is also necessary to ensure that the packaging is complete and sealed. To prevent the package from being damaged due to bumps and collisions during transportation, resulting in the leakage of the substance. If it leaks outside, it will not only cause material loss, but also may pose a threat to the environment and personnel safety.
At the same time, the transportation vehicle needs to be equipped with the corresponding variety and quantity of fire fighting equipment and leakage emergency treatment equipment. In the event of an accident, timely response measures can be taken to reduce the harm.
In addition, during transportation, it is necessary to strictly follow the prescribed route and avoid densely populated areas and important places. In this way, the impact on the public and important facilities in the event of an accident can be minimized.
In short, 2- - α - hydroxyphenylacetic acid needs to be paid attention to in terms of environmental conditions, packaging sealing, safety protection and transportation routes during storage and transportation to ensure its safety and stability.
2-chloro-alpha-hydroxybenzeneacetic the market outlook for Acid
2-Chloro - α - hydroxyphenylacetic acid, which has potential applications in medicine, chemical industry and other fields, so its market prospects are affected by multiple factors.
Let's talk about the pharmaceutical field first. With the deepening of disease research, many innovative drug research and development plans are gradually spreading. 2-Chloro - α - hydroxyphenylacetic acid as a key pharmaceutical intermediate, or in the creation of new anti-infection and anti-tumor drugs. For example, in some specific drug synthesis pathways, its unique chemical structure can give the finished drug better pharmacological activity, which can accurately act on diseased cells, improve efficacy and reduce side effects. If such new drugs are successfully developed and approved for marketing, the demand for 2- - α - hydroxyphenylacetic acid will rise sharply, which will strongly stimulate market growth.
Second-view chemical industry. In the field of fine chemicals, 2-chloro - α - hydroxyphenylacetic acid is often used as a raw material for the synthesis of special functional materials. For example, in the synthesis of some high-performance polymers, special coatings and fragrances, it can participate in the reaction to shape the unique physical and chemical properties of the products. With the increasing demand for high-end products in the chemical industry, manufacturers are increasingly strict on the quality and supply stability of this raw material in order to enhance product competitiveness. If manufacturers can meet such high standards and stabilize supply channels, they will be able to gain a place in the chemical market.
However, there are challenges in the market outlook. First, environmental regulations are becoming more and more stringent. The production process of 2- - α - hydroxyphenylacetic acid may involve the use and discharge of harmful substances. Enterprises need to invest huge amounts of money in environmental protection facilities upgrades and technological improvements to meet regulatory requirements. This will undoubtedly increase production costs. Some small and medium-sized enterprises may withdraw from the market due to overwhelm, affecting the overall market supply pattern. Second, the market competition is fierce. Globally, many chemical and pharmaceutical companies are involved in related fields, and product homogeneity occurs from time to time. If enterprises want to stand out, they must go all out in technological innovation, cost control and Client Server to continuously improve their core competitiveness.
Overall, the market prospect of 2- - α - hydroxyphenylacetic acid has both opportunities and challenges. With the development of the pharmaceutical and chemical industries, if enterprises can properly cope with environmental protection and competition problems, they will be able to find broad development space in the market.