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Home > Organic Chemistry
Organic chemistry is the chemistry of carbon compounds. The classification of organic chemical compounds is mainly based on their decisive role, which can be divided into hydrocarbons and hydrocarbon derivatives. Hydrocarbons include alkanes, alkenes, alkynes, and aromatic hydrocarbons. Hydrocarbon Derivatives include halogenated hydrocarbons, alcohols, phenols, ethers, aldehydes, ketones, carboxylic acids, carboxylic acid derivatives, amines, nitro compounds, nitrile Class, sulfur-containing organic compounds (such as mercaptans, thioethers, thiophenols, sulfonic acids, sulfones, and sulfoxides), phosphorus-containing organic compounds and other elemental organic compounds, heterocyclic compounds, etc. Organic chem compounds are found in living organisms and can be synthesized in labs. Normally found in plants, animals, and even in fossil fuels, organic chemical compounds have been widely applied in different industries, like chemistry, biology, pharmaceuticals, agriculture, and more. On ECHEMI, 39640 organic chemical suppliers provide various chemical products to meet all your demands at competitive prices!

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15544 Organic Chemistry items

3-AMINOBENZOTRIFLUORIDE

CAS No: 5098-16-8

Formula: C7H6F3N

Categories: Organic Chemistry > Organic Fluorine Compound

(+)-2,3-Butanediol

CAS No: 19132-06-0

Formula: C4H10O2

Categories: Organic Chemistry > Alcohols, Phenols, Phenol Alcohols

SLIGHTLY YELLOW OILY LIQUIDChEBI: The (S,S) diastereoisomer of butane-2,3-diol.2, 3-Butanediol, which is very important for a variety of chemical feedstocks and liquid fuels, can be derived from the bioconversion of natural resources1-2. It may be used in the production of antifreeze solvents, extraction solvents, butadiene, polymers, polyurethane and diacetyl and may also be used as a fuel1, 2.More

Regorafenib

CAS No: 755037-03-7

Formula: C21H15ClF4N4O3

Categories: Organic Chemistry > Hydrocarbons and Derivatives

Regorafenib (BAY 73-4506) is a multi-targeted receptor tyrosine kinase inhibitor with IC50s of 13/4.2/46, 22, 7, 1.5 and 2.5 nM for VEGFR1/2/3, PDGFRβ, Kit, RET and Raf-1, respectively. More

3-Aminopropanesulfonic acid

CAS No: 3687-18-1

Formula: C3H9NO3S

Categories: Organic Chemistry > Hydrotrope

Tramiprosate is a small, orally-administered compound that binds to soluble Aβ and reduces amyloid aggregation and subsequent depositiontarget: AβIn vitro: Tramiprosate provides neuroprotection against Aβ-induced neurotoxicity in neuronal and mouse organotypic hippocampal cultures, and reverses Aβ-induced long-term potentiation (LTP) inhibition in rat hippocampus, in part, through activation of β-aminobutyric acid A (GABA-A) receptors. Tramiprosate dose-dependently provides neuroprotectiMore

POTASSIUM TARTRATE

CAS No: 304655-91-2

Formula: C4H4K2O6

Categories: Organic Chemistry > Carboxylic Acids and Derivatives

White crystalline or granulated powderMore

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Hexafluoropropane

CAS No: 27070-61-7

Formula: C3H2F6

Categories: Organic Chemistry > Organic Fluorine Compound

Climbazole

CAS No: 38083-17-9

Formula:

Categories: Organic Chemistry > Anti-seborrheic

Climbazole is a topical antifungal agent, commonly used in the treatment of human fungal skin infections, such as dandruff and eczema. More

4-Bromoaniline

CAS No: 106-40-1

Formula: C6H6BrN

Categories: Organic Chemistry > Amides

4-Bromoaniline, a unique compound in the world of chemistry, attracts scientists' attention with its distinct solid state - brown crystals. This compound not only presents a deep brown color visually, but also has a subtle sweet taste in taste, which is a relatively rare phenomenon in chemical substances. According to the authoritative report of the US National Toxicology Program (NTP) in 1992, 4-bromoaniline plays an important role in industrial production and its application value cannot be ignored. In the industrial field, the main use of 4-bromoaniline lies in the preparation of azo dyes. Azo dyes, with their rich colors and good dyeing performance, are widely used in textiles, leather, plastics and other industries, adding endless colors to our lives. For example, vibrant red, deep blue, and even some special fluorescent colors are impossible without the contribution of azo dyes. These dyes can give textiles and other materials a unique charm, meeting people's pursuit of beauty and quality. In addition, 4-bromoaniline also participates in the synthesis of another important chemical intermediate - dihydroquinazoline. Dihydroquinazoline plays a key role in the production of pharmaceuticals and pesticides. In the pharmaceutical field, it can serve as a precursor for synthesizing antibiotics, antiviral drugs, and anti-cancer drugs, safeguarding human health. In the pesticide industry, quinazolinone is used to manufacture highly efficient and low-toxicity pesticides, ensuring the safety and efficiency of agricultural production. However, the chemical properties and reaction characteristics of 4-bromoaniline are not fixed, and are influenced by temperature, pressure, catalysts, and other factors. Therefore, scientists continue to conduct in-depth research to better understand the properties of this compound and optimize its application in production processes. By precisely controlling reaction conditions, the conversion efficiency of 4-bromoaniline can be improved, the generation of by-products can be reduced, and the safety of production processes can be ensured. Such research not only helps to improve the quality and output of dyes and pharmaceutical products, but also benefits environmental protection and achieves sustainable industrial development. 4-bromoaniline, as a versatile chemical raw material, has fully demonstrated the importance of chemistry in daily life and industrial production in its applications in diazo dyes and quinazolinone, etc. The unremitting exploration of scientists will continue to drive the scientific research and industrial applications of 4-bromoaniline forward, bringing more colors and possibilities to our lives.More

4-AMINOBENZENESULPHONAMIDEHCL

CAS No: 6101-31-1

Formula: C6H9ClN2O2S

Categories: Organic Chemistry > Amides

Frequently Asked Questions

Why are organic chemicals important in industry and research?

Organic chemicals are the basis of numerous industrial processes and research applications. They are critical for developing pharmaceuticals, agrochemicals, plastics, fuels, and specialty chemicals. Understanding their properties and reactions allows researchers and manufacturers to innovate, improve product performance, and ensure safety and sustainability.

Are there chemicals in organic food?

Yes, organic food naturally contains chemicals. Organic farming minimizes the use of synthetic pesticides, herbicides, and fertilizers but does not exclude them entirely. Only approved chemical products are allowed under organic certification standards. For example, in the U.S., the USDA National Organic Program permits certain pesticides and soil amendments that meet organic criteria. Plants themselves naturally produce chemicals, such as vitamins, alkaloids, and essential oils, which are safe and beneficial.

What are organic chemicals examples?

Organic chemicals are found in daily life and industry. Examples include:

• Biomolecules: carbohydrates, lipids, proteins, nucleic acids — essential for life.

• Fossil fuel derivatives: petroleum, natural gas, and refined products.

• Industrial chemicals: solvents, polymers, dyes, pharmaceuticals, fragrances.

On ECHEMI, you can connect with verified suppliers of organic chemicals and request quotes to source these products efficiently.

What is an organic chemical?

An organic chemical is any compound that contains carbon atoms covalently bonded to other elements, most commonly hydrogen, oxygen, or nitrogen. Organic chemicals are fundamental to life and can be naturally occurring in plants, animals, and microorganisms, or synthesized in laboratories for industrial and pharmaceutical applications. They are widely used to produce fuels, solvents, plastics, dyes, fragrances, and medicines.

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