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Home > Organic Chemistry > Carboxylic Acids and Derivatives (Find 56 items)

Phthalic anhydride

(85-44-9)
The compound is a high-tonnage chemical and is widely used in a variety of industrial organic syntheses. Phthalic anhydride is used in the manufacture of unsaturated polyesters and as a curing agent for epoxy resins. When used as a pigment, it can be responsible for sensitization in ceramic workers. Phthalic Anhydride is an organic compound and the anhydride of phthalic acid (P384480). Phthalic Anhydride is an important industrial chemical commonly used in large-scale production of plasticizers

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p-Toluenesulfonic acid

(104-15-4)
p-Toluenesulfonic acid,widely used as an acid catalyst in organic synthesis and esterification reactions. The pharmaceutical industry employs it as a resolving agent for chiral compounds. Various industrial processes utilize it as a stabilizer and curing agent in polymer production.

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Pentanoic acid

(109-52-4)
Sex attractant of the sugar beet wireworm, Limonius californicus.1

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Palmitic acid

(57-10-3)
Palmitic acid, or hexadecanoic acid in IUPAC nomenclature, is the most common fatty acid (saturated) found in animals, plants and microorganisms. Its chemical formula is CH3(CH2)14COOH. As its name indicates, it is a major component of the oil from palm trees (palm oil), but can also be found in meats, cheeses, butter, and dairy products. Palmitate is a term for the salts and esters of palmitic acid. The palmitate anion is the observed form of palmitic acid at physiologic pH (7.4).Aluminium salt

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Phenyl acetate

(122-79-2)
Phenyl Acetate is a metabolite of Phenylbutyrate (PB), useful in the treatment of neuroblastoma and lung cancer. An odorant found in strawberries, passion fruit and black tea.

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Pyromellitic dianhydride

(89-32-7)
Used in the manufacture of polyimide resin, which is used as a raw material for high-temperature electrical insulating paint. It is also used to prepare epoxy resin curing agents and plasticizers, urea-formaldehyde resin stabilizers, phthalocyanine blue dyes, corrosion inhibitors, instant binders, electronic photography toners, etc. Pyromellitic anhydride and its derivatives have a wide range of uses. PMDA is mainly used as epoxy resin curing agent, polyimide raw material, crosslinking of polyes

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Polymeric MDI

(9016-87-9)
Used for making polyurethane materials, widely used in the construction industry, automobile industry, electrical appliance industry, etc. as insulation materials or mattresses.

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Phosphorodichloridic acid, phenyl ester

(770-12-7)
It is used for the synthesis of avermectin benzoate and the preparation of phosphodiester. It is also used as a coupling agent for the polymerization of sulfinic acid with ethanol, ammonia, triol, etc.

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Carboxylic acid is the most important type of organic acid. A class of compounds with the general formula RCOOH or R (COOH) n, functional group: -COOH. In organic chemistry, compounds in which the hydroxyl group in the carboxylic acid molecule is replaced with other atoms or atomic groups such as halogen and amino groups are called carboxylic acid derivatives, including acid halides, acid anhydrides, esters, and amides.

Frequently Asked Questions

What are Carboxylic Acids and Derivatives?

Carboxylic acids and derivatives are a class of organic compounds characterized by the presence of a carboxyl group (–COOH). Common derivatives include esters, amides, acid chlorides, and anhydrides. These compounds play essential roles in pharmaceuticals, agrochemicals, polymers, and food additives due to their reactivity and versatility in chemical synthesis.

What are the common applications of Carboxylic Acids and Derivatives in industry?

Carboxylic acids and their derivatives are widely used across multiple industries:1. In pharmaceuticals, they serve as key building blocks for active pharmaceutical ingredients (APIs).2. In agriculture, they are used to synthesize herbicides, insecticides, and plant growth regulators.3. In polymer manufacturing, derivatives like esters are used to produce plastics, resins, and coatings.4. In the food industry, certain carboxylic acids act as preservatives or flavoring agents, such as citric acid and acetic acid.

How do I choose a reliable supplier for Carboxylic Acids and Derivatives?

When selecting a supplier for carboxylic acids and derivatives, consider the following criteria:1. Certifications such as ISO, GMP, or REACH compliance to ensure quality and regulatory adherence.2. Consistent product purity and batch-to-batch reproducibility verified through analytical data (e.g., HPLC, GC, NMR).3. Scalable production capacity and reliable logistics for timely delivery.4. Technical support and documentation, including safety data sheets (SDS) and certificates of analysis (CoA).Evaluating these factors helps ensure a trustworthy and efficient supply chain.

What safety and handling precautions are required for Carboxylic Acids and Derivatives?

Safety measures for handling carboxylic acids and derivatives depend on their specific properties, but general precautions include:1. Using appropriate personal protective equipment (PPE) such as gloves, goggles, and lab coats.2. Ensuring adequate ventilation to avoid inhalation of vapors, especially with volatile derivatives like acid chlorides.3. Storing materials in compatible, sealed containers away from moisture, heat, and incompatible substances (e.g., strong bases or oxidizers).4. Consulting the Safety Data Sheet (SDS) for compound-specific hazards and emergency procedures.Proper handling minimizes risks of corrosion, toxicity, or environmental impact.

What factors affect the quality of Carboxylic Acids and Derivatives in chemical synthesis?

The quality of carboxylic acids and derivatives used in synthesis is influenced by several factors:1. Raw material purity – impurities can lead to side reactions or reduced yields.2. Synthesis and purification methods – techniques like distillation, crystallization, or chromatography impact final purity.3. Storage conditions – exposure to air, moisture, or light may cause degradation (e.g., hydrolysis of esters or anhydrides).4. Analytical verification – rigorous testing via GC, HPLC, or titration ensures consistency and suitability for intended applications.Maintaining high-quality standards is critical for reproducible and efficient chemical processes.

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