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Home > Organic Chemistry > Ketones (Find 76 items)

Ketones

Ketones are a broad group of organic compounds used in different areas. Methyl ethyl ketone is a solvent used in the coatings and adhesives industry. Urine ketones are biomarkers of fat metabolism. Raspberry ketone is a natural compound used in flavoring and fragrance industries. These compounds are important in many industries with wide applications. Know more about ketones including CAS No., properties and information on materials and products on ECHEMI.

Benzanthrone

(82-05-3)
An important dye intermediate for the production of Vat Brilliant Green FFB, Vat Olive Green B, Vat Olive T, Vat Ash M, Vat Black BBN, etc.

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5-Methyl-2-hepten-4-one

(81925-81-7)
5-Methyl-2-hepten-4-one has a hazelnut, metallic, buttery odor and a hazelnut, buttery, mushroom taste. (2E)-5-Methyl-2-hepten-4-one has a fruity, hazelnut, and green odor reminding of dried fruits and a characteristic, nutty, roasted, and nougat-like hazelnut flavor. It was identified as the character compound of natural hazelnut flavor. Preparation is possible, for example, by Grignard reaction of 2-butyl magnesium chloride with crotonaldehyde and subsequent oxidation or by reaction of 2-meth

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p-Menthan-3-one

(10458-14-7)
It is a spice for the preparation of geraniol oil. It is used in trace amounts in citronellol or in floral essences such as roses. It has the effect of adjusting floral fragrance. It is used in lavender, scented scented, spicy and other types of spices. It is a raw material for edible cooling flavors, used for fruit flavors such as raspberry, etc., to enhance the flavor, increase the freshness and reduce the over-sweet taste. It is also a good spice for toothpaste. Uses Menthone (trans isomer) a

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4,4′-Bis(dimethylamino)benzophenone

(90-94-8)
Used as an important intermediate for basic dyes; Michler's ketone is an important intermediate for basic dyes, used in the production of Basic Brilliant Blue B, Basic Brilliant Blue R, etc. Used as reagents, dye intermediates and sensitizers for photoetching plates for the determination of tungsten; determination of tungsten. Qualitative test of metal organic compounds. Make dyes.

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1-(4-Chlorophenyl)-3-methyl-5-pyrazolone

(13024-90-3)
Neutral dye intermediates. Used to manufacture neutral brilliant yellow 3GL, neutral orange RL, neutral dark brown BRL, etc. Used as intermediates of dyes, pigments, medicines and pesticides; mainly used in organic synthesis of C.I. Acid Orange 87; 88 and other coupling components

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1-Pyrrolidinecarboxylic acid, 2-oxo-, 1,1-dimethylethyl ester

(85909-08-6)

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Diketene

(674-82-8)
Chemical intermediate for acetoacetic esters & acetoacetanilides, n,n-dialkylacetoacetamides, dyes, pharmaceuticals, for pigments & toners, food preservatives, insecticides, dicrotophos, & the fungicide, dehydroacetic acid.

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Ketones are compounds in which a carbonyl group is connected to two hydrocarbon groups. According to the different hydrocarbon groups in the molecule, ketones can be divided into fatty ketones, alicyclic ketones, aromatic ketones, saturated ketones and unsaturated ketones.

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Ketones are a large group of organic compounds having the functional group, the carbonyl group, where the carbonyl carbon is attached to two alkyl or aryl groups. Naturally occurring and chemically produced, ketones are used in a wide range of products owing to their versatility. It is used extensively in coatings and adhesives as well as in chemical production because it evaporates quickly and has high solubility. Industrial uses of ketones are also important but these chemicals are also useful in health sciences as markers in metabolic studies and diagnostics.

They are also used for their aromatic purposes in food, fragrances, cosmetics, and other consumer goods industries. That is why ketones are considered versatile compounds, which are widely used in various industries all over the world. Their applicability in various processes shows their significance in chemical synthesis and product development. Some ketones are also eco-friendly in some applications to meet the increasing need for environmentally friendly products.

Applications of Ketones:

● In coatings, adhesives, and chemical processing as solvents.

● Fragrances and flavouring agents also depend on it in their preparation.

● Be used as biological markers in the health and medical industry for diagnosis.

● Its application is in the production of resins for industrial use.

● Some of the vital components of cleaning agents and degreasers.

● Used in the polymer and plastic production industry.

Frequently Asked Questions

What are ketones and how are they used in chemical synthesis?

Ketones are organic compounds characterized by a carbonyl group (C=O) bonded to two carbon atoms. They play a vital role in chemical synthesis as versatile intermediates in the production of pharmaceuticals, agrochemicals, fragrances, and polymers. Common examples include acetone, cyclohexanone, and methyl ethyl ketone (MEK). Their reactivity makes them ideal for nucleophilic addition reactions, condensations, and reductions, enabling the construction of complex molecular structures.

What are the common industrial applications of ketones?

Ketones have diverse industrial applications across multiple sectors. In the pharmaceutical industry, they serve as building blocks for active pharmaceutical ingredients (APIs). In the paint and coatings sector, ketones like MEK and acetone act as effective solvents due to their fast evaporation rates and strong dissolving power. They are also used in adhesives, cleaning agents, and as precursors in the manufacture of synthetic fibers and resins. Additionally, certain ketones are key components in perfumery and flavor formulations.

Are ketones safe to handle in laboratory and industrial settings?

Ketones can be safely handled when proper safety protocols are followed. Most common ketones (e.g., acetone, MEK) are flammable and may cause irritation to skin, eyes, or respiratory systems with prolonged exposure. Always use appropriate personal protective equipment (PPE), ensure adequate ventilation, and store in approved flammable liquid cabinets. Safety Data Sheets (SDS) should be reviewed before use, and handling should comply with OSHA or local regulatory guidelines. Proper training and risk assessments significantly reduce hazards associated with ketone use.

What is the difference between aldehydes and ketones in organic chemistry?

Both aldehydes and ketones contain a carbonyl group (C=O), but they differ in structure and reactivity. In aldehydes, the carbonyl carbon is bonded to at least one hydrogen atom (R-CHO), whereas in ketones, it is bonded to two alkyl or aryl groups (R-CO-R'). This structural difference makes aldehydes generally more reactive than ketones toward oxidation and nucleophilic attack. For example, aldehydes can be easily oxidized to carboxylic acids, while ketones resist mild oxidation. These distinctions influence their roles as intermediates in synthetic pathways and their selection in industrial processes.

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