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Home > Chemical Reagents > Organic Reagents (Find 309 items)

Organic Reagents

Organic chemistry reagents are vital in chemical reactions and experiments, playing a crucial role in the field. They aid in synthesizing valuable products from raw materials. Common organic reagents are used in oxidation, reduction, and polymerization reactions, with applications in pharmaceuticals, agriculture, and materials science. For more information on organic reagents, including CAS numbers, properties, and supplier details, visit our platform, ECHEMI.

Propionyl chloride

(79-03-8)
Propanoyl Chloride, is an organic building block used in various chemical synthesis. It is used for the preparation of novel 2,4-diarylaminopyrimidines showing potent c-Met/ALK multikinase inhibitory activities and antitumor efficacy.

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p-Phenylenediamine

(106-50-3)
It is an important dye intermediate, mainly used in the manufacture of azo dyes and sulfur dyes. It can also be used in the production of fur black D and rubber antioxidant DNP, etc.; used as a fluorescent indicator, analytical reagent and fur dyeing agent, and also used in dyes Synthesis; mainly used in the production of azo dyes and sulfur dyes, and also used in the production of fur black D, fur blue black DB, fur brown NZ and rubber antioxidants DNP, 288, DOP, DBP. P-phenylenediamine is also

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Pyrithione

(1121-30-8)
Pyrithione is a compound with antibacterial and antifungal activity[1].

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Propanal

(123-38-6)
Propanal, also known as propionaldehyde, is a versatile chemical compound that finds extensive application in the synthesis of numerous other chemicals. It plays a crucial role in the production of pharmaceuticals, where it is used as a precursor in the synthesis of various drugs, contributing to the development of medications that address a wide range of medical conditions. Beyond the pharmaceutical industry, propanal is indispensable in the fragrance sector, where it serves as a key component in creating a diverse array of scents for perfumes, cosmetics, and other personal care products. Its ability to impart specific aromatic notes makes it an essential ingredient for those in the fragrance industry. Moreover, propanal is utilized in the food industry as an additive, enhancing flavors and contributing to the overall sensory experience of food products. Its applications in this sector include improving taste profiles and acting as a flavor enhancer in various food items. In the realm of organic synthesis, propanal serves as a fundamental building block, enabling chemists to construct complex molecules through a series of reactions. Its utility in this field underscores its importance in the advancement of chemical research and development. Additionally, propanal is a significant component in the production of polymers and other materials. Polymers, which are large molecules made up of repeating structural units, find applications in a multitude of products, ranging from plastics to fibers and elastomers. Propanal's role in polymer synthesis is pivotal, as it facilitates the creation of these essential materials that are integral to modern manufacturing and technology. Whether it's in the development of new drugs, the formulation of appealing fragrances, the enhancement of food products, the advancement of organic synthesis, or the production of polymers and materials, propanal demonstrates its versatility and indispensability across various industries.

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Phthalic acid

(88-99-3)
Organic reagent used to synthesize phthalates.

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Propane sultone

(1120-71-4)
1,3-Propanesultone has been used in preparation of poly[2-ethynyl-N-(propylsulfonate)pyridinium betaine],novel poly(4-vinylpyridine) supported acidic ionic liquid catalyst,novel poly(4-vinylpyridine) supported acidic ionic liquid catalyst.

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Pyrazole-4-carboxylic acid

(37718-11-9)
4-Pyrazolecarboxylic acid is used for the synthesis of isoxazole-4-carboxylic acid derivatives and isoxazole-3,5-dicarboxamides

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Organic reagents are used for the qualitative or quantitative determination of chemical elements and for the separation, enrichment and concealment of organic compounds. Organic reagents have a wide range of applications in analytical chemistry. From the perspective of use, organic reagents can be used as indicators, precipitants, titrants, color developers, extractants, adsorbents and concealing agents. "Organic Reagents" on ECHEMI mainly supplies raw materials for organic reagents.

More Information

Organic reagents, which are essential in many branches of chemistry, are the main actors in organic transformations and synthesis. These organic chemistry reagents are very important in building large molecules and are involved in reactions that include oxidation, reduction, substitution and polymerisation. Some of the most commonly used organic reagents include acids, bases and solvents all of which play different roles in chemical reactions. In many industries for instance the pharmaceutical industry, agriculture and materials science, these reagents have played a major role in developing new products and technologies.

Applications of organic reagents include:

● Pharmaceutical drug synthesis

● Agrochemical production

● Polymer manufacturing

● Dye and pigment creation

● Catalysts in industrial applications

● Fine chemical development

Frequently Asked Questions

What are organic reagents and how are they used in chemical synthesis?

Organic reagents are specialized chemical compounds used to facilitate or drive organic reactions during the synthesis of complex molecules. They play a critical role in forming carbon-carbon bonds, introducing functional groups, or modifying molecular structures. Common applications include pharmaceutical manufacturing, agrochemical development, and materials science. Selecting high-purity organic reagents ensures reaction efficiency, reproducibility, and product quality.

How do I choose high-quality organic reagents for laboratory or industrial use?

When selecting organic reagents, consider the following criteria:1. Purity grade (e.g., analytical, reagent, or HPLC grade) based on your application.2. Supplier certifications such as ISO, GMP, or REACH compliance.3. Stability and storage requirements to maintain reagent integrity.4. Technical documentation including certificates of analysis (CoA) and safety data sheets (SDS).Reputable suppliers with consistent quality control processes help ensure reliable experimental or production outcomes.

What are common types of organic reagents used in pharmaceutical research?

In pharmaceutical research, widely used organic reagents include Grignard reagents, organolithium compounds, coupling reagents (e.g., HATU, DCC), reducing agents (e.g., NaBH₄, LiAlH₄), and protecting group reagents (e.g., TBDMS-Cl). These reagents enable key transformations such as amide bond formation, nucleophilic addition, and selective functionalization—essential steps in active pharmaceutical ingredient (API) synthesis.

Are organic reagents hazardous, and how should they be handled safely?

Many organic reagents can be hazardous—they may be flammable, moisture-sensitive, toxic, or reactive. Safe handling requires adherence to safety protocols: use in a fume hood, wear appropriate PPE (gloves, goggles, lab coat), and store under recommended conditions (e.g., inert atmosphere, cold storage). Always consult the Safety Data Sheet (SDS) before use and follow institutional or regulatory guidelines for disposal and spill management.

Where can I buy reliable organic reagents for R&D or scale-up production?

Reliable organic reagents can be sourced from established chemical suppliers with strong quality assurance systems, global regulatory compliance, and technical support capabilities. Look for vendors offering batch-to-batch consistency, scalability from milligram to metric ton quantities, and documentation for traceability. Leading suppliers often serve both academic labs and industrial clients, ensuring suitability for research, pilot studies, or commercial manufacturing.

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