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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

N,N,N′,N′-Tetramethylethylenediamine

CAS No: 110-18-9

Formula: C6H16N2

Categories: Organic Chemistry > Amides

Colorless to slightly yellow liquidChEBI: An ethylenediamine derivative in which each nitrogen carries two methyl substituents. It is widely employed both as a ligand for metal ions and as a catalyst in organic polymerisation.A water-white colored liquid with a fishlike odor. Flash point 68°F. Less dense than water. Vapors heavier than air. Used to make other chemicals.More

Nicotinoyl chloride

CAS No: 10400-19-8

Formula: C6H4ClNO

Categories: Organic Chemistry > Carboxylic Acids and Derivatives

Intermediate of inositol nicotinate.More

1-Chloronaphthalene

CAS No: 90-13-1

Formula: C10H7Cl

Categories: Organic Chemistry > Hydrocarbons and Derivatives

Colorless liquid The chlorinated naphthalenes in which one or more hydrogen atoms have been replaced by chlorine to form wax-like substances, beginning with monochloronaphthalene and going on to the octachlor derivatives. Their physical states vary from mobile liquids to waxysolids depending on the degree of chlorination; freezing/ melting points of the pure compounds range from 17C for 1-chloronaphthalene to 198C for 1,2,3,4- tetrachloronaphthalene. 1-Chloro-isomer: Hazard identification (baseMore

3-Iodoaniline

CAS No: 626-01-7

Formula: C6H6IN

Categories: Organic Chemistry > Amides

Clear colorless to yellow-brown low melting solidMore

Vinylcyclohexane

CAS No: 695-12-5

Formula: C8H14

Categories: Organic Chemistry > Hydrocarbons and Derivatives

CLEAR COLOURLESS LIQUIDMore

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Sodium dichloroacetate

CAS No: 2156-56-1

Formula: C2H2Cl2O2.Na

Categories: Organic Chemistry > Organometalate

Sodium dichloroacetate is a metabolic regulator in cancer cells' mitochondria with anticancer activity. Sodium dichloroacetate inhibits PDHK, resulting in decreased lactic acid in the tumor microenvironment. Sodium dichloroacetate increases reactive oxygen species (ROS) generation and promotes cancer cell apoptosis. Sodium dichloroacetate also works as NKCC inhibitor[1]. More

5-Amino-2-fluorobenzonitrile

CAS No: 53312-81-5

Formula: C7H5FN2

Categories: Organic Chemistry > Organic Fluorine Compound

White solidMore

Bis(acetylacetonato)nickel

CAS No: 3264-82-2

Formula: C10H14NiO4

Categories: Organic Chemistry > Organometallic Compounds

Nickel(II) acetylacetonate Ni(CH3COCHCOCH3)2, is obtained as emerald green crystals by dehydration of the dihydrate at 50°C in vacuum; it has an unusual trimeric structure in the solid state. The dihydrate Ni(CH3COCH3)2.2H2O is prepared by the addition of acetylacetone to solutions of nickel(II) salts in the presence of a weak base such as sodium acetate. Nickel(II) acetylacetonate is soluble in organic solvents and finds use in the synthesis of organometallic compounds such as nickelocene and More

2-Methyl-5-nitrophenol

CAS No: 5428-54-6

Formula: C7H7NO3

Categories: Organic Chemistry > Hydrocarbons and Derivatives

Brown solidMore

1-Bromo-2-fluoro-4-methoxybenzene

CAS No: 458-50-4

Formula: C7H6BrFO

Categories: Organic Chemistry > Organic Fluorine Compound

Clear colorless to light yellow liquidMore

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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