PRODUCT REVIEW
Babo Botanicals Daily Sheer Sunscreen SPF 40 by Babo Botanicals, Pack of 2
Cheaper alternatives
Product summary
What can the product work for?
Sun protection
Anti-aging
What does the product description say?
Evens skin tone
Moisturizing
What does the product description say?
Anti-oxidation
Honesty check
How honest is this product?
Promise | Can it deliver? |
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Sun protection | |
Anti-aging |
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Can it cause trouble?
- Overall product irritation risk
- Acne & comedogenic risk ingredients: 2
Potential irritants
Comodogenic ingredients
User reviews (0)
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WIMJ similarity score |
34%
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SPF | SPF 40 | SPF 30 | SPF 30 | SPF 30 | SPF 50 | SPF 30 | SPF 30 | SPF 30 | SPF 30 | SPF 30 | SPF 50 |
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Irritancy | IRRITANCY
MEDIUM
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LOW
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LOW
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LOW
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LOW
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LOW
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LOW
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LOW
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LOW
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LOW
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LOW
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Ingredients & concentrations
All ingredients
Key Actives
Potential irritants
Comodogenic ingredients
All ingredients
Ingredient list view
Titanium dioxide, Zinc oxide, Aloe barbadensis leaf juice, Aluminum hydroxide, Beeswax, Butyrospermum parkii butter, Camellia sinensis leaf extract, Cetearyl alcohol, Coco-glucoside, Dehydroxanthan gum, Dicaprylyl carbonate, Ethylhexylglycerin, Glycerin, Helianthus annuus seed oil, Hydrogen dimethicone, Hydrolyzed wheat protein/pvp crosspolymer, Hydroxyethyl acrylate/sodium acryloyldimethyl taurate copolymer, Methyl dihydroabietate, Myristyl alcohol, Myristyl glucoside, Persea gratissima oil, Phenethyl alcohol, Unknown, Ricinus communis seed oil, Rosa canina fruit extract, Simmondsia chinensis seed oil, Triethoxycaprylylsilane, Water
Sources
- A review of inorganic UV filters zinc oxide and titanium dioxide
- Risk assessment of zinc oxide, a cosmetic ingredient used as a UV filter of sunscreens
- Characterization of the UVA protection provided by avobenzone, zinc oxide, and titanium dioxide in broad-spectrum sunscreen products
- Ultraviolet Protection Properties of Commercial Sunscreens and Sunscreens Containing Zno Nanorods
- ZnO nanoparticles and organic chemical UV-filters are equally well tolerated by human immune cells
- Safety Assessment of Alumina and Aluminum Hydroxide as Used in Cosmetics
- In Vitro Assessment of Skin Irritation Potential of Surfactant-based Formulations by Using a 3-D Skin Reconstructed Tissue Model and Cytokine Response
- Allergen of the Year—Alkyl Glucoside
- Glycerol and the skin: holistic approach to its origin and functions
- Effect of Olive and Sunflower Seed Oil on the Adult Skin Barrier: Implications for Neonatal Skin Care
- Topically Applied Sunflower Seed Oil Prevents Invasive Bacterial Infections in Preterm Infants in Egypt
- Effect of topically applied lipids on surfactant-irritated skin
- Impact of topical oils on the skin barrier: possible implications for neonatal health in developing countries
- Cosmetic allergy from myristyl alcohol
- Contact Sensitization to Emulsifying Agents: An Underrated Issue?
- Patch testing with myristyl alcohol
- Final Report on the Safety Assessment of Phenethyl Alcohol
- Final report on the safety assessment of Ricinus Communis (Castor) Seed Oil, Hydrogenated Castor Oil, Glyceryl Ricinoleate, Glyceryl Ricinoleate SE, Ricinoleic Acid, Potassium Ricinoleate, Sodium Ricinoleate, Zinc Ricinoleate, Cetyl Ricinoleate, Ethyl Ricinoleate, Glycol Ricinoleate, Isopropyl Ricinoleate, Methyl Ricinoleate, and Octyldodecyl Ricinoleate
- Castor Oil: Properties, Uses, and Optimization of Processing Parameters in Commercial Production