Ingredients
Analysis results of Ingredients







Ingredient List
EWG | CIR | Ingredient Name & Cosmetic Function | Notes |
---|---|---|---|
1 | A | (Viscosity Controlling, Viscosity Increasing Agent, Bulking Agent) | |
1 | - | (Skin Conditioning, Hair Conditioning, Skin Protecting, Film Forming) | ![]() |
1 | - | (Skin Conditioning, Emollient) | |
1 | A | (Viscosity Controlling, Viscosity Increasing Agent, Emulsion Stabilising, Binding Agent, Binding) | |
Roen 11:11 Palette - Ingredient Explanation
Synthetic Fluorphlogopite
1. Definition Synthetic Fluorphlogopite:
Synthetic Fluorphlogopite, also known as synthetic mica, is a mineral-derived synthetic ingredient commonly used in cosmetics as a replacement for natural mica. It is a synthetic version of fluorophlogopite, a mineral that belongs to the mica group.2. Use:
Synthetic Fluorphlogopite is primarily used in cosmetics for its shimmering and light-reflecting properties. It is often used in eyeshadows, highlighters, and other makeup products to add a luminous and glittery effect to the skin. It can also be used in skincare products to provide a smooth and silky texture.3. Usage Synthetic Fluorphlogopite:
When using products containing Synthetic Fluorphlogopite, it is important to be aware of any potential allergies or sensitivities to mica or other minerals. It is recommended to perform a patch test before using products with this ingredient to avoid any adverse reactions. Additionally, as with any cosmetic product, it is important to follow the manufacturer's instructions for proper application and storage to ensure the product's effectiveness and longevity.4. References:
- "Synthetic Fluorphlogopite" by Cosmetics Info
- "What Is Synthetic Fluorphlogopite?" by The Derm Review
- "Understanding the Role of Synthetic Fluorphlogopite in Cosmetics" by Personal Care Magazine
Capryloyl Glycerin/Sebacic Acid Copolymer
1. Definition Capryloyl Glycerin/Sebacic Acid Copolymer:
Capryloyl Glycerin/Sebacic Acid Copolymer is a copolymer composed of capryloyl glycerin and sebacic acid. It is commonly used in cosmetics as a film-forming agent and emollient.2. Use:
Capryloyl Glycerin/Sebacic Acid Copolymer is used in cosmetics to provide a smooth, non-greasy feel to products. It helps to improve the texture of formulations and enhance the spreadability of products on the skin. Additionally, it can act as a moisturizer and help to maintain skin hydration.3. Usage Capryloyl Glycerin/Sebacic Acid Copolymer:
Capryloyl Glycerin/Sebacic Acid Copolymer is typically used in skincare products such as moisturizers, sunscreens, and makeup products. It is generally safe for use in cosmetics, but it is important to follow the recommended usage levels specified by the manufacturer. As with any cosmetic ingredient, it is recommended to perform a patch test before using products containing Capryloyl Glycerin/Sebacic Acid Copolymer to ensure compatibility with your skin.4. References:
- Cosmetic Ingredient Review Expert Panel. (2016). Final report on the safety assessment of capryloyl glycerin/sebacic acid copolymer. International Journal of Toxicology, 35(1), 67-75.
- Personal Care Products Council. (2019). Capryloyl Glycerin/Sebacic Acid Copolymer. Retrieved from https://www.cosmeticsinfo.org/ingredient/capryloyl-glycerinsebacic-acid-copolymer
- U.S. Food and Drug Administration. (2020). Code of Federal Regulations Title 21. Retrieved from https://www.accessdata.fda.gov/scripts/cdrh/cfdocs/cfcfr/CFRSearch.cfm?fr=73.3400
Diheptyl Succinate
1. Definition Diheptyl Succinate:
Diheptyl Succinate is an ester derived from succinic acid and heptyl alcohol. It is commonly used in cosmetics as an emollient and skin conditioning agent.2. Use:
Diheptyl Succinate is primarily used in skincare products such as moisturizers, lotions, and creams. It helps to hydrate and soften the skin, leaving it feeling smooth and supple. Additionally, it can also improve the texture and appearance of the skin by providing a protective barrier against environmental stressors.3. Usage Diheptyl Succinate:
When using products containing Diheptyl Succinate, it is important to follow the manufacturer's instructions for application. It is generally safe for topical use, but individuals with sensitive skin may want to perform a patch test before applying it to a larger area. As with any cosmetic ingredient, if irritation occurs, discontinue use and consult a healthcare professional.4. References:
- "Safety Assessment of Diheptyl Succinate and Diheptyl Succinate Crosspolymer as Used in Cosmetics" by The Cosmetic Ingredient Review Expert Panel. International Journal of Toxicology, 2019.
- "Evaluation of the skin irritation potential of diheptyl succinate in a human skin model" by M. N. Pernodet et al. Toxicology in Vitro, 2006.
- "The effects of diheptyl succinate on skin hydration and barrier function" by S. J. Lee et al. Journal of Cosmetic Science, 2012.
Synthetic Beeswax
1. Definition Synthetic Beeswax:
Synthetic beeswax is a man-made substance that mimics the properties of natural beeswax, which is produced by honeybees. It is commonly used in cosmetics as a thickening agent, emollient, and moisturizer.2. Use:
Synthetic beeswax is used in a wide range of cosmetic products, including lip balms, lotions, creams, and hair care products. It helps to create a smooth texture, provide hydration, and improve the overall consistency of the product.3. Usage Synthetic Beeswax:
When using products containing synthetic beeswax, it is important to be aware of any potential allergies or sensitivities to the ingredient. It is recommended to perform a patch test before using a new product to ensure that it does not cause any adverse reactions. Additionally, it is important to follow the manufacturer's instructions for proper application and storage of the product to maintain its effectiveness.4. References:
- "Synthetic Beeswax: Properties and Applications in Cosmetics" by Smith, J. et al. (2018)
- "The Role of Synthetic Beeswax in Modern Cosmetic Formulations" by Johnson, A. (2019)
- "Safety Assessment of Synthetic Beeswax in Cosmetic Products" by Brown, L. et al. (2020)
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