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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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15574 Organic Chemistry items

L-Carnitine hydrochloride

CAS No: 10017-44-4

Formula: C7H15NO3HCl

Categories: Organic Chemistry > Nitrogen Compounds

(+)-Propylene oxide

CAS No: 15448-47-2

Formula: C3H6O

Categories: Organic Chemistry > Hydrocarbons and Derivatives

Colorless to light yellow liquiMore

Isopropylamine

CAS No: 75-31-0

Formula: C3H9N

Categories: Organic Chemistry > Buffering

Isopropylamine is a colorless, flammable liquid. Isopropylamine is misciblewith water, alcohol, and ether.The odor threshold reportedly ranges from 0.21 to 0.70 ppm;the pungent, ammoniacal odor becomes irritating at 24mg/m3(110).More

Tetraethylene glycol

CAS No: 112-60-7

Formula: C8H18O5

Categories: Organic Chemistry > Hydrocarbons and Derivatives

PROTAC Linker 18 is a PROTAC linker, which refers to the alkyl/ether composition. PROTAC Linker 18 can be used in the synthesis of a series of PROTACs. PROTACs contain two different ligands connected by a linker; one is a ligand for an E3 ubiquitin ligase and the other is for the target protein. PROTACs exploit the intracellular ubiquitin-proteasome system to selectively degrade target proteins[1]. More

1-Monostearin

CAS No: 123-94-4

Formula: C21H42O4

Categories: Organic Chemistry > Carboxylic Acids and Derivatives

ChEBI: A rac-1-monoacylglycerol composed of equal amounts of 3-stearoyl-sn-glycerol and 1-stearoyl-sn-glycerol.Monostearin (also known as 1-Stearoyl-rac-glycerol) is a long chain molecule typically occurring in the body as a by-product of the breakdown of fats. It is one of the panels of serum metabolic biomarkers for detecting and diagnosing cancer, especial ovarian cancer. It is also used in the development of drug delivery vehicles such as nanoparticles and microemulsions. It can also beMore

N,N-Diethylaniline

CAS No: 91-66-7

Formula: C10H15N

Categories: Organic Chemistry > Amides

light yellow liquid N,N-Diethylaniline is a pale yellow liquid. It is slightly soluble in water (1.40 g/L at 12°C), and soluble in alcohol and ether.More

o-Toluidine

CAS No: 95-53-4

Formula: C7H9N

Categories: Organic Chemistry > Heterocyclic Ring

o-Toluidine (ortho-toluidine) is an organic compound with the chemical formula C7H9N.o-Toluidine is primarily used in the manufacture of dyes. o-Toluidine is highly toxic to humans when absorbed through the skin, inhaled as vapor, or swallowed. Acute (short-term) exposure of humans to o-toluidine affects the blood (i.e., methemoglobinemia), with clinical signs of central nervous system depression. The chronic (long-term) effects in workers exposed to o-toluidine include anemia, anorexia, weightMore

Butyl bromide

CAS No: 109-65-9

Formula: C4H9Br

Categories: Organic Chemistry > Hydrocarbons and Derivatives

clear colorless to slightly yellow liquidA clear colorless liquid. Flash point 65°F. Denser than water and insoluble in water. Vapors heavier than air.More

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BENZYLAMINE HYDROBROMIDE

CAS No: 37488-40-7

Formula: C7H9N.BrH

Categories: Organic Chemistry > Amides

Sulfamethoxazole

CAS No: 723-46-6

Formula: C10H11N3O3S

Categories: Organic Chemistry > Amides

Sulfamethoxazole is a sulfonamide bacteriostatic antibiotic.Target: AntibacterialSulfonamides are structural analogs and competitive antagonists of para-aminobenzoic acid (PABA). They inhibit normal bacterial utilization of PABA for the synthesis of folic acid, an important metabolite in DNA synthesis. The effects seen are usually bacteriostatic in nature. Folic acid is not synthesized in humans, but is instead a dietary requirement. This allows for the selective toxicity to bacterial ceMore

Decabromodiphenyl ether

CAS No: 1163-19-5

Formula: C12Br10O

Categories: Organic Chemistry > Ethers and Derivatives

White solid DBDPO is a white to off-white powder. A polybrominated biphenyl. Decabromodiphenyl oxide is a solid white powder at room temperature.White to off-white powder with a chemical odor.More

Diethylenetriamine

CAS No: 111-40-0

Formula: C4H13N3

Categories: Organic Chemistry > Amides

colourless liquid Diethylenetriamine is a corrosive liquid and a solvent (18, 139).A yellow liquid with an ammonia-like odor. Less dense than water. Corrosive to metals and tissue. Vapors heavier than air. Burns, although possibly difficult to igntie. Toxic oxides of nitrogen produced during combustion. Used as a solvent for plastics and dyes and in chemical synthesis.More

Dicyclopentadiene

CAS No: 77-73-6

Formula: C10H12

Categories: Organic Chemistry > Hydrocarbons and Derivatives

Cyclopentadiene is a crystalline solid or a liquid (above 32°C) with a disagreeable, camphor-like odor. The Odor Threshold is 0.011 (detectable); 0.020 ppm (recognizable).
cyclopentadiene, although a stable molecule, has a strong tendency to form the more stable dimer dicyclopentadiene. This dimerisation already takes place at room temperature and its rate rapidly increases with elevated temperatures. This reaction however is reversible too; dicyclopentadieneMore

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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