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Home > Organic Chemistry > Hydrocarbons and Derivatives (Find 380 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.

2-Methylbenzenesulfonamide

(88-19-7)
Plasticizer of thermosetting resin, as a raw material used in organic synthesis, preparation of nail polish, dyes, fluorescent pigments and coatings.

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2-Bromobutane

(78-76-2)
In the field of chemistry, 2-bromobutane is widely used as an intermediate in organic synthesis, especially in the preparation of various butyl compounds. Due to the presence of its bromine atoms, it can undergo halogen exchange via SN1 or SN2 reactions to generate a variety of other organic compounds to meet different chemical needs. In addition, it is also used in the production of medicine, pesticides and dyes, and its application fields are wide and important. The versatility of 2-bromobutane lies in its potential applications in organic synthesis. As a Grignard reagent, it can be used to form carbon-carbon bonds, allowing the synthesis of more complex organic molecules. This ability makes 2-bromobutane a valuable intermediate for the production of a wide range of chemicals, pharmaceuticals and other industrially relevant compounds. The ability to form Grignard reagents, combined with its relatively simple structure, makes 2-bromobutane a useful tool in the hands of organic chemists. By performing selective reactions and transformations, researchers and industrial chemists can harness the unique properties of this organic compound to create a wide variety of products that contribute to advances in various fields, including pharmaceuticals, agrochemicals and specialty chemicals. For example, in the pharmaceutical industry, 2-bromobutane can be used to prepare complex organic molecules with specific biological activities. These molecules could be precursors for new types of drugs that could help treat everything from the common cold to rare genetic disorders and even cancer. Through precisely controlled chemical reactions, it is possible to ensure where and how 2-bromobutane is added to the molecule to optimize its pharmacological and bioavailability properties. In the field of agrochemicals, 2-bromobutane can be used to synthesize compounds with insecticidal, bactericidal or herbicidal activity. These chemicals play a vital role in protecting crops from pests and diseases and ensuring the security and stability of the global food supply. Through the chemical reactions they participate in, new pesticides that have less impact on the environment and are more selective to target organisms can be designed. In addition, 2-bromobutane has a wide range of applications in the synthesis of specialty chemicals. For example, it can be used to prepare high-performance polymers, optical materials, electronic chemicals, etc. These materials are widely used in aerospace, communications, energy and other high-tech fields, promoting the rapid development of science and technology. The versatility of 2-bromobutane and its potential for forming carbon-carbon bonds have made it an integral part of the modern chemical industry. With the continuous progress and innovation of organic synthesis technology, the application prospect of 2-bromobutane will be broader, providing new solutions to solve various chemical and engineering challenges. The combination of 2-bromobutane's physical and chemical properties, as well as its versatility in organic synthesis, make it a valuable and widely used organic compound in chemistry and other fields.

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2,4-Dichlorofluorobenzene

(1435-48-9)
Used as an intermediate for pesticides and pharmaceuticals, as an intermediate for a new fluoroquinolone antibacterial drug ciprofloxacin

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2-Chloropropane

(75-29-6)
The main purpose is used as a solvent and for the manufacture of isopropylamine

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2-Bromofluorene

(1133-80-8)
2-Bromofluorene is a nonintrusive end-capping reagent to control molecular weights and to generate well-defined oligomers. 2-Bromofluorene is used as a reagent for the preparation of dibromofluorene-labelled polystyrene by nitroxide-mediated polymerization. It is also being used in the agricultural sector as a fungicide for tomato disease control. Its carcinogenic effects on humans are currently being investigated.
(1) It can be used as pharmaceutical intermediate, it is also important i

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2-Iodophenol

(533-58-4)
suzuki reaction 2-Iodophenol is a halophenol with antifungal activity. 2-Iodophenol is used as a catalyst in the synthesis of 1,3,5-substituted benzenes. 2-Iodophenol is also used as additive tracers for resist plasm a etching.

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2-Ethylanthraquinone

(84-51-5)
2-Ethylanthraquinone is an organic compound that is a derivative of anthraquinone. It is pale yellow solid is used in the industrial production of hydrogen peroxide (H2O2).

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2-Fluorobiphenyl

(321-60-8)
Medicine, pesticide, veterinary medicine and organic synthesis intermediate

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2-Buten-1-ol

(6117-91-5)
Used in organic synthesis, manufacturing plasticizer, soil fumigant, herbicide, medicine, paint, etc.

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2-Methylnaphthalene

(91-57-6)
Production of vitamin K3, preparation of oral contraceptives, synthesis of plant growth inhibitors, textile printing and dyeing aids, surfactants, important intermediates of feed additives, and β-methylnaphthoquinone as electron transporters to participate in the photosynthesis of organisms and can also be synthesized A variety of biologically active pharmaceutical products.

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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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