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Home > Organic Chemistry > Hydrocarbons and Derivatives (Find 2307 items)
Explore the raw materials of hydrocarbons and their derivatives. From aromatic hydrocarbons to aliphatic hydrocarbons, discover each compound's CAS NO., properties, and SDS. Procure raw hydrocarbon materials from accredited suppliers and access comprehensive product details for your chemical formulations.

Terbinafine hydrochloride

(78628-80-5)
1. An orally active, antimycotic allylamine related to Naftifine. A specfic inhibitor of squalene epoxidase, a key enzyme in fungal ergosterol biosynthesis. Antifungal.
2. Terbinafine hydrochloride is a synthetic allylamine antifungal. It is used to treat dermatophyte infections of the toenail/fingernail, ringworm and jock itch. It is used in adsorption, partition and stability studies.

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1,3-Benzodioxole

(274-09-9)
Used as an important intermediate for spices, medicines and pesticides

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Diallyl

(592-42-7)
Used in organic synthesis. Used as a standard substance for chromatographic analysis.

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Dichloroethane

(1300-21-6)
Mainly used as raw materials for vinyl chloride, ethylene glycol, oxalic acid, ethylenediamine, tetraethyl lead, polyethylene polyamine and dibenzoyl. It is also used as a solvent for grease, resin, rubber, dry cleaning agent, extractant for pesticides, chrysanthemum, caffeine, vitamins, hormones, wetting agent, penetrating agent, petroleum dewaxing, anti-shock agent, also used in pesticide manufacturing and medicine The raw material of metronidazole and piperazine. Can it be used as food in agr

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Ethyl bromide

(74-96-4)
Ethyl bromide is an organic solvent that can be used as an intermediate in the preparation of anesthetic drugs such as phenperidine and propofol. In addition, it can be used as a local anesthetic in surgery to produce a rapid and short-term anesthetic effect. Ethyl bromide can be used with hydrochlorothiazide and other drugs to synthesize anti-epileptic drugs, exerting sedative, hypnotic, anticonvulsant and other effects. Ethyl bromide can be used for crop protection, preparing intermediates for organophosphorus, organochlorine, organofluorine and other pesticides, and it can also be used directly as a pesticide to kill pests in plantations. Ethyl bromide can be used to prepare some special-purpose coatings, such as steel structure fire-retardant coatings, which can play a role in extinguishing fires. Ethyl bromide is also an effective flame retardant, which can be used to prepare flame retardants for plastic products such as polycarbonate, polyethylene, and polystyrene. Adding an appropriate amount of Ethyl bromide can reduce the toxic gases and smoke released when plastics burn, and reduce the losses caused by fires.

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p-Xylene

(106-42-3)
As solvent; raw material for production of benzoic acid, phthalic anhydride, isophthalic and terephthalic acids as well as their dimethyl esters used in the manufacture of polyester fibers; manufacture of dyes and other organics; sterilizing catgut; with Canada balsam as oil-immersion in microscopy; clearing agent in microscope technique.

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Benzyl chloride

(100-44-7)
Organic synthesis intermediates are widely used in medicine, pesticides, spices, plastics, dye additives, synthetic resins and chemical reagents, such as extracting benzyl alcohol, phenethyl cyanide, aromatic esters and benzoxane fungicides.

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Cyclopentene

(142-29-0)
Cyclopentene is used in organic synthesis and for cross-linking resins. It is used as an intermediate in pesticides, dyes, pharmaceuticals, synthetic materials, chemicals, and other industries. It is used as a monomer for the synthesis of plastics and rubber. It is also used to synthesize various chemicals, such as 1,1,2-trimethylcyclohexane. Cyclopentene is synthesized by selective hydrogenation of cyclopentadiene or dehydration of cyclopentanol. Industrially, it is produced in large quantities by steam cracking of naphtha. In the laboratory, cyclopentene is prepared by dehydration of cyclopentanol. Cyclopentene is present in coal tar, cigarette smoke and automobile exhaust.

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Hydrocarbons generally refer to hydrocarbons and are a type of organic compound. This compound consists of only two elements, carbon and hydrogen, including alkanes, alkenes, alkynes, cyclic hydrocarbons, and aromatic hydrocarbons, and is the matrix of many other organic compounds. There are many types of hydrocarbons, which can be divided into: open-chain hydrocarbons, alicyclic hydrocarbons, aromatic hydrocarbons. Hydrocarbon derivatives are compound compounds that continue to combine with other elemental substances or other compounds. Derivatives of hydrocarbons are more colorful and diverse. It mainly combines with oxygen, chlorine, bromine and their hydrides to form a huge derivative community.

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Hydrocarbons, also known as carbonaceous compounds, are organic compounds composed solely of carbon and hydrogen. These compounds, commonly referred to as hydrocarbons, form through reactions with chlorine, bromine vapor, oxygen, and other elements. Methane (CH4) is the simplest hydrocarbon molecule, consisting of a central carbon atom connected to four hydrogen atoms.

In our daily lives, we frequently encounter hydrocarbons. For instance, propane in natural gas and butane in lighters are both examples of hydrocarbons. They serve as fuels due to the vast energy stored within their covalent bonds. During combustion, this energy is released in the form of heat as they react with oxygen to produce carbon dioxide and water.

Hydrocarbons encompass various types, including:
● aromatic hydrocarbons
● saturated hydrocarbons
● aliphatic hydrocarbons

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