
Highlights
WHAT IS IT?
Foaming cleanser, 15 ingredients
FEATURES
Removes 99% of micro pollutants including PM 2.5, rich creamy foam, long-lasting oil control without over-drying, prevents pore buildup, non-comedogenic, paraben and sulfate free, dermatologically tested
BEST FOR
sensitive
CHECKS
No paraben, No sulphate
Who Is It For?
All Genders Age Not SpecifiedWhat Does It Help With?
Cleansing Oil Control Prevention Of Pore Buildup Suitable For Breakout-prone SkinBudget
Affordable (under $30)How To Use
Which routine should it be used in?
Instructions:
Key Information
What Neutrogena Says
Product Description:
Deep Clean Gentle Foaming Cleanser offers a thorough cleanse with long-lasting oil control for a fresh, deep-clean feeling. Its rich, creamy foam dissolves and washes away dirt, oil, and dead skin cells, helping prevent buildup that can clog pores. Designed to provide lasting oil control without over-drying, the non-comedogenic formula ensures clear skin without causing breakouts. Removes 99% of micro pollutants including PM 2.5 for a deep cleanse. Provides long-lasting oil control without over-drying. Helps prevent pore buildup for clearer skin. Non-comedogenic formula suitable for breakout-prone skin. Leaves skin feeling fresh, clean, and balanced. Free from paraben and sulphate. Dermatologically tested.
About the Brand:
Ingredients Overview
Ingredients List
Water,Glycerin,Sodium-Cocoyl-Glycinate,Sodium-Cocoyl-Isethionate,Cocamidopropyl-Betaine,Myristic-Acid,Glycol-Distearate,Acrylates-Copolymer,Lauric-Acid,PEG-120-Methyl-Glucose-Dioleate,Phenoxyethanol,Caprylyl-Glycol,Chlorphenesin,Fragrance,Sodium-Hydroxide,Hydroxyethylcellulose,Disodium-EDTA
Key Ingredients
Sodium Cocoyl Glycinate, Sodium Cocoyl Isethionate, Cocamidopropyl Betaine
Ingredients Details
Chlorphenesin
Common Name(s): 3-(4-chlorophenoxy)-1,2-propanediol,globacid
CAS Number: 104-29-0
DESCRIPTION
What It Does: Provides gram-negative focused preservation complementary to phenoxyethanol for comprehensive spectrum coverage.
Why It's Used: Phenoxyethanol complement โ chlorphenesin's gram-negative and antifungal coverage complements phenoxyethanol's gram-positive activity for full-spectrum preservation at lower individual concentrations.
How It Works: 4-chlorophenol ether glycol disrupts bacterial and fungal membranes. strong gram-negative activity (pseudomonas, e. coli). good candida antifungal activity. used with phenoxyethanol for synergistic broad-spectrum coverage. ph stable 3-9.
Typically Found In: Comprehensive preservation systems,baby products (low concentration)
TECHNICAL DETAILS
Primary Category: Functional ingredient โ glycerol ether preservative
Secondary Functions: Skin conditioning
Application Areas:
Facial Skincare
Body Care
Hair Care
Beard Care
Color Cosmetics (Makeup)
Dietary/Oral Supplements
Typical Concentration Range: 0.1%โ0.3%
SOURCING & ETHICS
Vegan Status: Yes โ synthetic
Halal Status: Yes
Source Notes: Commercially produced for cosmetic use. verify vegan/halal status with supplier.
SKIN COMPATIBILITY
Irritancy Rating: 1/5 โ very low
Comedogenicity Rating: 0/5 โ non-comedogenic
Sensitivity Concerns: Well-tolerated by most skin types.
Safe for Sensitive Skin: Yes
SAFETY & COMPATIBILITY
Safety Profile: Eu max 0.3% cosmetics. good safety profile. synergistic combination with phenoxyethanol (0.3% pe + 0.1% chlorphenesin often equivalent to 1% pe alone).
Works Well With: Standard skincare actives
Avoid Combining With: No known significant incompatibilities
SCIENTIFIC NOTE
Chlorphenesin + phenoxyethanol synergy operates through a classic spectrum-filling combination: phenoxyethanol provides strong gram-positive antimicrobial activity while chlorphenesin provides gram-negative and antifungal coverage. the combination's minimum inhibitory concentration sum is subadditive (provides equivalent preservation at combined concentrations below what either alone would require) โ textbook pharmacological synergy enabling lower total preservative load.
Last Verified: Cosing database,eu preservative annex v,cir safety assessment
Primary Sources: 2026-03-12
Fragrance
Common Name(s): Fragrance ingredient,eu allergen or aromatic component,olfactory/flavour
CAS Number: N/a
DESCRIPTION
What It Does: Provides the complete fragrance profile contributing to product sensory experience and consumer appeal.
Why It's Used: Fragrance is a major consumer purchase driver โ up to 70% of consumers make purchasing decisions partially based on product scent.
How It Works: Fragrance blends interact with olfactory receptors providing the sensory profile โ complex mixtures activate multiple receptor types for rich, multidimensional scent experiences.
Typically Found In: All fragrance products
TECHNICAL DETAILS
Primary Category: Active ingredient โ cosmetic active
Secondary Functions: Skin conditioning
Application Areas:
Facial Skincare
Body Care
Hair Care
Beard Care
Color Cosmetics (Makeup)
Dietary/Oral Supplements
Typical Concentration Range: Standard use levels
SOURCING & ETHICS
Vegan Status: Conditional
Halal Status: Yes
Source Notes: Commercially produced for cosmetic use. verify vegan/halal status with supplier.
SKIN COMPATIBILITY
Irritancy Rating: 1/5 โ very low
Comedogenicity Rating: 0/5 โ non-comedogenic
Sensitivity Concerns: Well-tolerated by most skin types.
Safe for Sensitive Skin: Yes
SAFETY & COMPATIBILITY
Safety Profile: Good safety profile at recommended concentrations. ewg score: 1โ2.
Works Well With: Standard skincare actives
Avoid Combining With: No known significant incompatibilities
SCIENTIFIC NOTE
Ifra guidelines set usage limits for fragrance ingredients based on skin sensitisation and phototoxicity assessment for each application category.
Last Verified: Eu regulation 1223/2009 annex iii,ifra standards,fragrance allergen declaration requirements
Primary Sources: 2026-03-12
Glycerin
Common Name(s): Glycerol,glycerine,1,2,3-propanetriol
CAS Number: 56-81-5
DESCRIPTION
What It Does: Glycerin pulls water from the environment and deeper skin layers into the outer skin layer (epidermis), boosting moisture levels and keeping skin soft, smooth, and plump.
Why It's Used: It is used in virtually every moisturizer, serum, and cleanser because it is highly effective at hydrating skin, is well-tolerated by all skin types, and enhances the texture and spreadability of formulations.
How It Works: As a humectant, glycerin forms hydrogen bonds with water molecules, trapping them in the skin. it also reinforces the skin barrier by integrating into lipid structures between skin cells.
Typically Found In: Moisturizers,serums,cleansers,toners,sheet masks,sunscreens,body lotions,shampoos,conditioners
TECHNICAL DETAILS
Primary Category: Humectant
Secondary Functions: Skin barrier support,emollient,solvent
Application Areas:
Facial Skincare
Body Care
Hair Care
Beard Care
Color Cosmetics (Makeup)
Dietary/Oral Supplements
Typical Concentration Range: 1%โ30% (typical: 3โ10%)
SOURCING & ETHICS
Vegan Status: Yes โ plant-derived (coconut, soy, palm) or synthetic
Halal Status: Yes โ when plant-derived or synthetic; verify source with supplier
Source Notes: Derived from plant oils via hydrolysis or saponification; synthetic versions also available. palm-derived glycerin carries sustainability concerns.
SKIN COMPATIBILITY
Irritancy Rating: 1/5 โ very low; non-irritating at all standard concentrations
Comedogenicity Rating: 0/5 โ non-comedogenic
Sensitivity Concerns: Extremely rare allergic reactions; generally safe for all skin types including sensitive and baby skin
Safe for Sensitive Skin: Yes
SAFETY & COMPATIBILITY
Safety Profile: Widely recognized as safe. ewg hazard score: 1. no significant concerns for irritation, sensitization, or toxicity at typical concentrations (up to 50%).
Works Well With: Hyaluronic acid,ceramides,niacinamide,panthenol,urea,peptides,retinol,ahas/bhas
Avoid Combining With: No known incompatibilities at standard concentrations
SCIENTIFIC NOTE
Glycerin is an endogenous skin component found naturally in the stratum corneum. aquaporin-3 channels in keratinocytes facilitate glycerin transport, making it integral to natural skin hydration pathways.
Last Verified: Cosing database,cir safety assessment,ewg skin deep,inci decoder
Primary Sources: 2026-03-12
Hydroxyethylcellulose
Common Name(s): Hec,natrosol,ethylhydroxyethylcellulose
CAS Number: 9004-62-0
DESCRIPTION
What It Does: Provides non-ionic thickening compatible with anionic surfactants and electrolyte-containing formulations.
Why It's Used: Non-ionic cellulose thickener for surfactant systems where anionic/cationic thickener incompatibility is a concern.
How It Works: Hydroxyethyl substitution disrupts cellulose crystallinity enabling water solubility. non-ionic nature provides compatibility with anionic, cationic, and amphoteric surfactants. pseudoplastic rheology provides shear-thinning for dispensing. film formation from cellulose backbone.
Typically Found In: Shampoos,body washes,clear gels,surfactant systems
TECHNICAL DETAILS
Primary Category: Functional ingredient โ cellulose thickener
Secondary Functions: Tewl reduction,skin plumping
Application Areas:
Facial Skincare
Body Care
Hair Care
Beard Care
Color Cosmetics (Makeup)
Dietary/Oral Supplements
Typical Concentration Range: 0.1%โ3%
SOURCING & ETHICS
Vegan Status: Yes โ from cellulose (plant)
Halal Status: Yes
Source Notes: Synthetic or naturally derived. excellent aqueous solubility.
SKIN COMPATIBILITY
Irritancy Rating: 1/5 โ very low
Comedogenicity Rating: 0/5 โ non-comedogenic
Sensitivity Concerns: Non-irritating; suitable for all skin types.
Safe for Sensitive Skin: Yes
SAFETY & COMPATIBILITY
Safety Profile: Excellent safety profile. ewg score: 1.
Works Well With: Ceramides,emollients,occlusives,glycerin,hyaluronic acid
Avoid Combining With: No significant incompatibilities
SCIENTIFIC NOTE
Hydroxyethylcellulose's non-ionic character is its primary differentiator from anionic carboxymethylcellulose โ the absence of ionizable groups means hec maintains stable viscosity across ph 2-12 and at high electrolyte concentrations where carboxymethylcellulose destabilizes. this ionic independence makes hec the preferred cellulose thickener for acidic and salt-containing formulations.
Last Verified: Cosing database,ashland hec technical data,cir safety assessment
Primary Sources: 2026-03-12