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Cosmetic Ingredient

Perfuming

Infuse delightful scents into your products with our premium perfuming raw materials. Check all the chemical products you need for perfuming with CAS NO., property information, and SDS. Shop perfuming raw chemical materials from certified suppliers with detailed product information.

Propanal

(123-38-6)
Propanal, also known as propionaldehyde, is a versatile chemical compound that finds extensive application in the synthesis of numerous other chemicals. It plays a crucial role in the production of pharmaceuticals, where it is used as a precursor in the synthesis of various drugs, contributing to the development of medications that address a wide range of medical conditions. Beyond the pharmaceutical industry, propanal is indispensable in the fragrance sector, where it serves as a key component in creating a diverse array of scents for perfumes, cosmetics, and other personal care products. Its ability to impart specific aromatic notes makes it an essential ingredient for those in the fragrance industry. Moreover, propanal is utilized in the food industry as an additive, enhancing flavors and contributing to the overall sensory experience of food products. Its applications in this sector include improving taste profiles and acting as a flavor enhancer in various food items. In the realm of organic synthesis, propanal serves as a fundamental building block, enabling chemists to construct complex molecules through a series of reactions. Its utility in this field underscores its importance in the advancement of chemical research and development. Additionally, propanal is a significant component in the production of polymers and other materials. Polymers, which are large molecules made up of repeating structural units, find applications in a multitude of products, ranging from plastics to fibers and elastomers. Propanal's role in polymer synthesis is pivotal, as it facilitates the creation of these essential materials that are integral to modern manufacturing and technology. Whether it's in the development of new drugs, the formulation of appealing fragrances, the enhancement of food products, the advancement of organic synthesis, or the production of polymers and materials, propanal demonstrates its versatility and indispensability across various industries.

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Myristic acid

(544-63-8)
Myristic acid is a 14-carbon saturated (14:0) fatty acid. In vivo, it is commonly added covalently to the N-terminus of proteins in a co-translational process termed N-myristoylation. In addition, there are examples where N-myristoylation occurs post-translationally, when a hidden myristoylation pattern is exposed.

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Benzhydrol

(91-01-0)
Widely utilized in a variety of industrial applications, benzaldehyde is a chemical compound that exhibits exceptional chemical reactivity. This attribute allows it to be readily converted into benzophenone through oxidation reactions. The compounds derived from benzaldehyde are integral to the synthesis of fullerenes, bioactive oxacyclic compounds, dyes, and drugs, offering valuable synthetic intermediates to these respective fields. In the realm of industrial production, hexavalent chromium and other oxidizing agents are commonly employed to oxidize benzaldehyde, thereby facilitating the production of benzophenone. The significance of benzaldehyde within the pharmaceutical industry is self-evident, as it serves as a crucial raw material for the production of a diverse array of medications. This includes antihistamines, which play a pivotal role in medical treatment. Moreover, benzaldehyde finds extensive application in the production of agricultural chemicals and perfumes, testament to its wide-ranging utility and value. In the manufacture of perfumes, benzaldehyde is utilized as a fixative, thereby enhancing the stability of fragrances. This enables perfumes to retain their enchanting scents for an extended duration. In polymerization reactions, benzaldehyde functions as a terminating group in chemical reactions, thereby playing a pivotal role in regulating the progression of polymerization reactions. In the synthesis of various compounds, such as modafinil, benzhexol, and diphenyline, benzaldehyde is an indispensable precursor. Particularly in the preparation of modafinil, diphenylmethanol emerges as a key intermediate, playing a decisive role in the subsequent synthesis of the drug. This further underscores the importance of benzaldehyde in the pharmaceutical industry and provides robust support for the advancement of associated industries. As a versatile organic compound, benzaldehyde boasts extensive application prospects in both industrial and medical contexts. Its value and significance cannot be overlooked, given its pivotal role in facilitating the production of a wide array of substances, ranging from pharmaceuticals and agricultural chemicals to perfumes.

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Methyl isobutyl ketone

(108-10-1)
Methyl isobutyl ketone (MIBK) is the organic compound with the formula (CH3)2CHCH2C(O)CH3. This colourless liquid, a ketone, is used as a solvent for gums, resins, paints, varnishes, lacquers, and nitrocellulose.
MIBK is used as a solvent for gums, resins,nitrocellulose and cellulose ethers, and various fats, oils, and waxes. Methyl isobutyl ketone (hexone, isobutyl methyl ketone, 4-methyl-2-pentanone) is an organic solvent similar in structure and use to methyl butyl ketone. In addition to

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Acetyl tributyl citrate

(77-90-7)
1. Labelled Tributyl O-Acetylcitrate (T772950). Topical pharmaceutical formulation anesthetic surfactant ester.
2. Plasticizer flavoring agent

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Linseed oil

(8001-26-1)
The botanical properties of linseed oil are listed as emollient, antiinflammatory, and healing. Derived from the flax plant seed, the oil is obtained by expression with little or no heat.

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1-Butanol

(71-36-3)
1-Butanol has a wide range of uses in many industries. For example, it is used as a solvent in industries related to the manufacture of paints, varnishes, synthetic resins, gums, pharmaceuticals, vegetable oils, dyes and alkaloids. 1-Butanol is used in the manufacture of artificial leather, rubber, plastic cement, shellac, raincoat, perfume and film. 1-Butanol can also be used as an extractant in the manufacture of antibiotics, hormones, hops, vegetable oils and vitamins. 1-Butanol can be used as an ingredient in processed and artificial flavorings, as well as to extract lipoprotein free from egg yolks, and can be added to natural flavorings and vegetable oils. In addition, 1-butanol is considered a potential biofuel and has been proposed as an alternative to diesel and gasoline.

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4-Methoxybenzyl alcohol

(105-13-5)
4-Methoxybenzyl Alcohol is used in the preparation of semiconductors, nanosheets and nanocrystals. Also is used as a reagent for various chemical organic reactions such as in the synthesis of quinolines.

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Piperine

(94-62-2)
1. The alkaloid which gives pepper its spiciness, and has been used as an organic insecticide.
2. Analeptic, antibacterial
3. Antipsychotic
4. A black pepper extract TRPV1 activator

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Perfuming refers to the incorporation of fragrance and aromatic raw materials into cosmetic formulations to impart pleasant scents. According to origin, perfuming agents can be categorized into natural and synthetic types. According to volatility, perfuming agents can be divided into top, middle, and base notes. According to the concentration of fragrance, perfuming agents can be divided into essential oils, which are highly concentrated extracts, and fragrance oils, which are diluted solutions often used in perfumery and cosmetics."Perfuming agents" on ECHEMl mainly supply perfume raw materials.

More Information

Perfuming can enrich products with appealing scents. When incorporated into cosmetic formulations, fragrance compounds interact with other ingredients to create a harmonious blend of scents. This interaction may involve chemical reactions, molecular diffusion, or physical adsorption onto surfaces.

Fragrance compounds used in perfuming are meticulously selected based on their olfactive profiles and compatibility with other ingredients in the formulation. These compounds may include natural extracts, essential oils, synthetic aroma chemicals, or a combination thereof.

Common ingredients used in perfuming:

•Essential oils

•Synthetic aroma chemicals

•Fragrance fixatives

•Solvents and carriers

Frequently Asked Questions

What are perfuming ingredients used for in fragrance formulation?

Perfuming ingredients are essential components used to create and enhance scents in a wide range of products, including fine fragrances, cosmetics, personal care items, and household cleaners. These ingredients can be natural (like essential oils and absolutes) or synthetic aroma compounds designed to mimic natural scents or create entirely new olfactory experiences. Their primary role is to provide the desired fragrance profile while ensuring stability, longevity, and compatibility with other formulation components.

How do I choose high-quality perfuming materials for my product line?

Selecting high-quality perfuming materials involves evaluating several key criteria:1. Purity and consistency of the aromatic compound.2. Compliance with international regulatory standards such as IFRA (International Fragrance Association) guidelines.3. Supplier transparency regarding sourcing, safety data sheets (SDS), and allergen declarations.4. Stability and performance in your specific product base (e.g., alcohol-based perfumes vs. aqueous lotions).Working with certified and reputable suppliers ensures both product safety and olfactory excellence.

What is the difference between natural and synthetic perfuming agents?

Natural perfuming agents are derived from botanical sources such as flowers, woods, resins, and citrus peels through methods like steam distillation or solvent extraction. They offer authentic, complex aromas but may vary in composition due to harvest conditions. Synthetic perfuming agents are lab-created molecules that provide consistent scent profiles, greater stability, and access to notes not found in nature (e.g., ozonic or metallic accords). Both types are widely used in modern perfumery, often in combination, to achieve balance, creativity, and regulatory compliance.

Are there regulations governing the use of perfuming ingredients in consumer products?

Yes, perfuming ingredients are subject to strict regulations to ensure consumer safety. The International Fragrance Association (IFRA) sets global standards based on scientific risk assessments, restricting or banning certain substances if they pose health risks. Additionally, regional regulations—such as the EU Cosmetics Regulation (EC) No 1223/2009—require full disclosure of fragrance allergens above specified thresholds on product labels. Manufacturers must comply with these rules to legally market scented products in most countries.

How should perfuming ingredients be stored to maintain their quality?

To preserve the integrity and performance of perfuming ingredients, store them in tightly sealed, amber or opaque glass containers away from direct sunlight, heat, and humidity. Most aroma chemicals and essential oils are sensitive to oxidation and temperature fluctuations, which can alter their scent profile or cause degradation. Keeping them in a cool, dry place (ideally below 25°C / 77°F) and using inert gas blanketing for bulk storage can significantly extend shelf life and maintain olfactory consistency.

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