Peter Thomas Roth Hungarian Thermal Water Eye Cream Review

Peter Thomas Roth Hungarian Thermal Water Eye Cream
7.6
/ 10
Moisturizing
5.2 Humectancy icon Humectancy
10.0 Occlusivity icon Occlusivity
Ingredients

Peter Thomas Roth Hungarian Thermal Water Eye Cream Ingredients

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Full Ingredient List (INCI):

Water, Dimethicone, Ethylhexyl Olivate, Caprylic/Capric Triglyceride, Stearic Acid, Glycerin, Cetyl Alcohol, Stearyl Alcohol, Isostearyl Alcohol, Caprylyl Methicone, Octyldodecyl Myristate, Cholesterol, Caffeine, Ceramide NP, Ceteareth-20, Propanediol, Hydrolyzed Collagen, Palmitoyl Tripeptide-5, Oligopeptide-2, Squalane, Sodium Hyaluronate, Dunaliella Salina Extract, Panthenol, Pantolactone, Fucus Vesiculosus Extract, Arnica Montana Flower Extract, Hippophae Rhamnoides Fruit Extract, Helianthus Annuus (Sunflower) Seed Oil, Linum Usitatissimum (Linseed) Seed Oil, Oenothera Biennis (Evening Primrose) Oil, Prunus Armeniaca (Apricot) Kernel Oil, Prunus Persica (Peach) Kernel Oil, Ethylcellulose, Citric Acid, Myristic Acid, Dimethicone Crosspolymer, HDI/Trimethylol Hexyllactone Crosspolymer, Glyceryl Acrylate/Acrylic Acid Copolymer, Carbomer, Polysilicone-11, Xanthan Gum, Hexylene Glycol, Caprylyl Glycol, Butylene Glycol, Butylene Glycol Cocoate, Potassium Sorbate, Sodium Hydroxide, Sodium Benzoate, Ethylhexylglycerin, Phenoxyethanol, Silica, Mica
Review

Does Peter Thomas Roth Hungarian Thermal Water Eye Cream Work?

 
According to CreamScan's analysis of the ingredient list, here’s what Peter Thomas Roth Hungarian Thermal Water Eye Cream has to offer:
 
✅ Significant moisturizing. It has a moisturizing rating of 7.6 out of 10.

  

Key Benefits of Peter Thomas Roth Hungarian Thermal Water Eye Cream

 
These are the key benefits you can expect from using Peter Thomas Roth Hungarian Thermal Water Eye Cream:
 

🔵🔵🔵 Exceptionally Rich Moisturizer with the Right Occlusivity for Very Dry Skin

According to CreamScan analysis, Peter Thomas Roth Hungarian Thermal Water Eye Cream is highly moisturizing, with a moisturizing rating of 7.6 out of 10.

Is it more humectant or occlusive? Significantly more occlusive. It has a moderate humectancy of 5.2 out of 10, primarily due to the substantial concentration of Glycerin (est. ≈2.5%), and a maximum occlusivity of 10 out of 10, mainly due to the high content of Dimethicone (est. ≈9.0%) and Ethylhexyl Olivate (est. ≈6.0%).

This type of product, when used as a standalone moisturizer, can deliver an exceptional level of occlusive hydration that is adequate for dry to very dry skin. The occlusive profile of Peter Thomas Roth Hungarian Thermal Water Eye Cream suggests a rich, thick texture, making it perfectly suited for dry skin.

Please refer to the Ratings section below for details of the moisturizing rating calculation.

📌 Please note that this is not a complete list of benefits. We are in the process of enhancing our model to incorporate anti-pigmentation, exfoliation and anti-acne ratings.

Things to Be Aware Of: Peter Thomas Roth Hungarian Thermal Water Eye Cream

 
CreamScan identified a few things to consider before adding Peter Thomas Roth Hungarian Thermal Water Eye Cream to your skincare routine:
 

⚠️ Best for Very Dry Skin - May Be Too Thick for Other Skin Types

With exceptional occlusivity, this product is optimal for moisturizing dry and very dry skin but may be too thick for other skin types, including normal, and especially combination and oily skin.

If you have oily, combination, or normal skin and are considering purchasing this product for the first time, it might be a good idea to try a sample before buying.

⚠️ Needs to Be Paired with Extra Humectants for Optimal Moisturizing Efficacy

An ideal moisturizer for any skin type should balance the right level of occlusivity (depending on skin type) with a significant amount of humectants, while Peter Thomas Roth Hungarian Thermal Water Eye Cream contains a moderate level of humectants.

People with dry skin would definitely benefit from adding more humectants to their moisturizing routine beyond what this product offers. If this is your only moisturizer, it may be worth including a humectant-rich product, such as a serum, in your skincare routine.

⚠️ Questionable anti-wrinkle efficacy

If one of your main reasons for choosing Peter Thomas Roth Hungarian Thermal Water Eye Cream is its potential anti-aging effects, please note that, according to CreamScan analysis, it currently has a zero anti-wrinkle rating.

It contains some ingredients often marketed as effective in reducing wrinkles, specifically Caffeine, Palmitoyl Tripeptide-5, and Fucus Vesiculosus Extract. However, the studies supporting the anti-wrinkle claims of these ingredients provide insufficient evidence of efficacy according to CreamScan Research Evaluation Standards. 

While this does not categorically rule out the possibility that these ingredients may reduce wrinkles, their efficacy is not supported by convincing, vehicle-controlled, double-blind clinical studies - at least none that were available to the CreamScan team at the time of publication.

Therefore, these ingredients do not generate the anti-wrinkle rating.

📌 Moisturizers, when used regularly, are proven to prevent wrinkle formation and even reduce existing wrinkles. Therefore, this product, like any other moisturizer, can deliver some anti-wrinkle effects through its moisturizing action.

Please refer to the Ratings section below for details of the anti-wrinkle rating calculation.

Pros & Cons of Peter Thomas Roth Hungarian Thermal Water Eye Cream

 
Here’s an overview of the pros and cons of Peter Thomas Roth Hungarian Thermal Water Eye Cream to help you decide if it’s the right choice for your skincare routine:
 

🟩 Pros:

Exceptionally rich moisturizer with the right level of occlusivity to moisturize dry to very dry skin
 

⭕ Cons: 

⚠️ May feel too rich and thick on skin types other than dry
⚠️ Only if used as a standalone moisturizer - needs to be paired with extra humectants for optimal moisturizing efficacy
⚠️ Questionable anti-wrinkle efficacy
   

Summary: Peter Thomas Roth Hungarian Thermal Water Eye Cream

 
Based on the ingredient list analysis, CreamScan AI suggests that Peter Thomas Roth Hungarian Thermal Water Eye Cream
, as a moisturizer, provides an exceptional level of occlusive hydration that is adequate for dry to very skin, delivered in a rich, thick texture.
 
That said, there are some things about Peter Thomas Roth Hungarian Thermal Water Eye Cream worth noting.
 
With its high occlusivity, Peter Thomas Roth Hungarian Thermal Water Eye Cream is ideal for dry skin but may feel too thick on other skin types. If you have oily, combination, or normal skin, it’s a good idea to try a sample before purchasing.
 
If you use this product as your only moisturizer in a routine, please note that it contains a limited amount of humectants. Regardless of your skin type, adding extra humectants can enhance optimal moisturizing efficacy. Therefore, it may be worth pairing Peter Thomas Roth Hungarian Thermal Water Eye Cream with a humectant-rich product, such as a serum, in your skincare routine.
 
If one of your main reasons for considering Peter Thomas Roth Hungarian Thermal Water Eye Cream is its potential anti-aging effects, please note that, according to CreamScan analysis, its anti-wrinkle efficacy is questionable. None of the ingredients in this product provide substantial evidence of their anti-wrinkle efficacy according to CreamScan Research Evaluation Standards.
 
📌 Fact check. At CreamScan, we are committed to accuracy and fairness. If you spot any errors or something that doesn’t seem right, please click here to let us know. We regularly update the ingredient lists and monitor the latest research on ingredient efficacy to ensure that our information remains as complete and precise as possible. The information provided here is for informational purposes only and does not substitute professional advice. We do not guarantee the efficacy or safety of any product, as individual results may vary.

 

Ingredient Breakdown

Est. % Ingredient Origin Functions
55
9
6
4
3
2.5
2
1.5
1.3
1
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
Est. %
Water
Function:
Origin:
Dimethicone
Function:
Origin:
Ethylhexyl Olivate
Function:
Origin:
Caprylic/Capric Triglyceride
Function:
Origin:
Stearic Acid
Function:
Origin:
Glycerin
Function:
Origin:
Cetyl Alcohol
Function:
Origin:
Stearyl Alcohol
Function:
Origin:
Isostearyl Alcohol
Function:
Origin:
Caprylyl Methicone
Function:
Origin:
Octyldodecyl Myristate
Function:
Origin:
Cholesterol
Function:
Origin:
Caffeine
Function:
Origin:
Ceramide NP
Function:
Origin:
Ceteareth-20
Function:
Origin:
Propanediol
Function:
Origin:
Hydrolyzed Collagen
Function:
Origin:
Palmitoyl Tripeptide-5
Function:
Origin:
Oligopeptide-2
Function:
Origin:
Squalane
Function:
Origin:
Sodium Hyaluronate
Function:
Origin:
Dunaliella Salina Extract
Function:
Origin:
Panthenol
Function:
Origin:
Pantolactone
Function:
Origin:
Fucus Vesiculosus Extract
Function:
Origin:
Arnica Montana Flower Extract
Function:
Origin:
Hippophae Rhamnoides Fruit Extract
Function:
Origin:
Helianthus Annuus (Sunflower) Seed Oil
Function:
Origin:
Linum Usitatissimum (Linseed) Seed Oil
Function:
Origin:
Oenothera Biennis (Evening Primrose) Oil
Function:
Origin:
Prunus Armeniaca (Apricot) Kernel Oil
Function:
Origin:
Prunus Persica (Peach) Kernel Oil
Function:
Origin:
Ethylcellulose
Function:
Origin:
Citric Acid
Function:
Origin:
Myristic Acid
Function:
Origin:
Dimethicone Crosspolymer
Function:
Origin:
HDI/Trimethylol Hexyllactone Crosspolymer
Function:
Origin:
Glyceryl Acrylate/Acrylic Acid Copolymer
Function:
Origin:
Carbomer
Function:
Origin:
Polysilicone-11
Function:
Origin:
Xanthan Gum
Function:
Origin:
Hexylene Glycol
Function:
Origin:
Caprylyl Glycol
Function:
Origin:
Butylene Glycol
Function:
Origin:
Butylene Glycol Cocoate
Function:
Origin:
Potassium Sorbate
Function:
Origin:
Sodium Hydroxide
Function:
Origin:
Sodium Benzoate
Function:
Origin:
Ethylhexylglycerin
Function:
Origin:
Phenoxyethanol
Function:
Origin:
Silica
Function:
Origin:
Mica
Function:
Origin:

Ratings

All humectants
5.2
2.5
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
Benchmark
10
All occlusives
25.4
9.0
6.0
4.0
3.0
1.0
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
Benchmark
20
Moisturizing rating
7.6
Ingredient Est. % Benchmark Raiting
Humectancy All humectants 5.2 10
5.2
2.5
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
Occlusivity All occlusives 25.4 20
10.0
9.0
6.0
4.0
3.0
1.0
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
Moisturizing rating
7.6
Ingredient Est. % Benchmark Humectancy
2.5
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
All humectants 5.2 10
5.2
All humectants
5.2
2.5
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
Benchmark
10
Ingredient Est. % Benchmark Occlusivity
9
6
4
3
1
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
All occlusives 25.4 20
10.0
All occlusives
25.4
9.0
6.0
4.0
3.0
1.0
0.3
0.3
0.3
0.3
0.3
0.3
0.3
0.3
Benchmark
20
Ingredient
Ingredient anti-wrinkle power
when present at, %
in this formula est. %
Rating
n/a
- 0.3 -
n/a
- 0.3 -
n/a
- 0.3 -
Total
0
Caffeine
-
Ingredient anti-wrinkle power
n/a
when present at, %
-
in this formula, est. %
0.3
Palmitoyl Tripeptide-5
-
Ingredient anti-wrinkle power
n/a
when present at, %
-
in this formula, est. %
0.3
Fucus Vesiculosus Extract
-
Ingredient anti-wrinkle power
n/a
when present at, %
-
in this formula, est. %
0.3
Anti-wrinkle rating
0
Ingredient Est. % Benchmark
Rich in Antioxidants
0.3
0.3
0.3
All antioxidants 0.9 3 No
All antioxidants
0.9
Caffeine
0.3
Sodium Hyaluronate
0.3
Dunaliella Salina Extract
0.3
Benchmark
3
Ingredient Est. % Benchmark
Rich in Soothing
0.3
0.3
0.3
All soothing 0.9 5 No
All soothing
0.9
0.3
0.3
0.3
Benchmark
5

Ingredients explained

Water
Est. %55
Function
Origin
WaterThe most used ingredient in skincare. Its concentration defines the product texture: rich creams may have about 50% of water while a light jelly about 90%. Water doesn’t moisturize the skin by itself and is used in skincare as a solvent for other ingredients.
Dimethicone
Est. %9
Function
Origin
DimethiconeThe most common silicone in skincare. It forms a silky, smooth film on the skin’s surface and can help to prevent water loss. It also aids in wound healing and can treat and soften scars. Dimethicone is considered to be very safe for use.
Ethylhexyl Olivate
Est. %6
Function
Origin
Ethylhexyl Olivate
Caprylic/Capric Triglyceride
Est. %4
Function
Origin
Caprylic/Capric TriglycerideA natural occlusive moisturizing and emollient ingredient, it is a blend of glycerin and two fatty acids, caprylic and capric acid. It creates an oil-based protective layer on the skin, thereby preventing water loss.
Stearic Acid
Est. %3
Function
Origin
Stearic AcidA saturated fatty acid found in vegetable butter and animal fats. It is an occlusive moisturizing and emollient ingredient and also helps to maintain the barrier function of the skin.
Glycerin
Est. %2.5
Function
Origin
Glycerin

The most popular moisturizing ingredient in the world. It is a powerful humectant – cheap yet very effective.

Cetyl Alcohol
Est. %2
Function
Origin
Cetyl AlcoholA waxy solid fatty alcohol derived from palm oil. It is most commonly used as a co-emulsifier and affects the final aesthetic of the product, leaving a soft and silky feeling on the skin. Cetyl alcohol is also used as a viscosity controlling agent.
Stearyl Alcohol
Est. %1.5
Function
Origin
Stearyl AlcoholA natural fatty alcohol that thickens, stabilizes, and keeps emulsions a bright white color. It has many uses, the main one being as an emulsifier. It also acts as an opacifying agent and emollient.
Isostearyl Alcohol
Est. %1.3
Function
Origin
Isostearyl Alcohol
Caprylyl Methicone
Est. %1
Function
Origin
Caprylyl MethiconeA liquid silicone with occlusive moisturizing properties. Being compatible with natural oils is a challenge for most silicones, but caprylyl methicone plays well with all types of oils.
Octyldodecyl Myristate
Est. %0.3
Function
Origin
Octyldodecyl MyristateA luxurious feeling ester that remains light and silky despite its richness.
Cholesterol
Est. %0.3
Function
Origin
CholesterolAn emollient and important barrier repairing lipid, effective when combined with fatty acids and ceramides. Around 25% of the skin’s lipid layer is made up of cholesterol and it is found in the membrane of every single cell in our body.
Caffeine
Est. %0.3
Function
Origin
CaffeineAn antioxidant compound that is obtained from coffee and tea leaves. It increases the microcirculation of blood in the skin and is claimed to be able to reduce the appearance of orange peel skin (although the research is lacking).
Ceramide NP
Est. %0.3
Function
Origin
Ceramide NPAlso known as ceramide 3, it is the most common ceramide in our skin. It helps to restore the skin’s lipid barrier and alleviate the symptoms of dry and cracked skin. Research has shown that skin suffering from conditions such as AD lacks ceramides.
Ceteareth-20
Est. %0.3
Function
Origin
Ceteareth-20A fatty alcohol emulsifier that helps to mix oil and water together, best for oil-in-water emulsions. It is also a cleansing agent. When combined with cetearyl alcohol, ceteareth-20 forms a mix that, according to acne.org, can be comedogenic.
Propanediol
Est. %0.3
Function
Origin
PropanediolAn excellent solvent capable of mixing water with normally water-insoluble ingredients. It also functions as a humectant due to its water-loving alcohol groups. Propanediol can control the viscosity of a product by reducing its thickness.
Hydrolyzed Collagen
Est. %0.3
Function
Origin
Hydrolyzed Collagen

A humectant, film-forming, and emollient mixture of various proteins and peptides that were created by cutting the huge molecules of normal collagen into smaller pieces for better absorption. It also has some antioxidant properties.

Palmitoyl Tripeptide-5
Est. %0.3
Function
Origin
Palmitoyl Tripeptide-5

A small synthetic peptide that signals the skin to produce more collagen. It has been clinically tested and proven to reduce skin roughness and the appearance of wrinkles.

Oligopeptide-2
Est. %0.3
Function
Origin
Oligopeptide-2
Squalane
Est. %0.3
Function
Origin
SqualaneAn occlusive moisturizing and emollient compound that forms part of the skin’s sebum. The main source of squalane had always been shark liver. Now, however, it is manufactured synthetically or derived from plant oils, such as olive and peanut oil.
Sodium Hyaluronate
Est. %0.3
Function
Origin
Sodium Hyaluronate

A sodium salt of famous hyaluronic acid. A potent humectant that hydrates the skin, supports collagen function, and fills out small wrinkles. Sodium hyaluronate also offers soothing and antioxidant properties.

Dunaliella Salina Extract
Est. %0.3
Function
Origin
Dunaliella Salina ExtractDerived from a species of bright red algae, this extract contains the potent antioxidant beta-carotene, as well as a humectant moisturizing glycerol.
Panthenol
Est. %0.3
Function
Origin
PanthenolA popular soothing and moisturizing derivative of vitamin B5. Panthenol is particularly beneficial for dry, flaking, burned, or damaged skin. It is used to alleviate the symptoms of a rash, dermatitis, eczema, chapped lips, and sunburn.
Pantolactone
Est. %0.3
Function
Origin
PantolactoneA vitamin B5 derivative. Similar to panthenol, it has several benefits as an antioxidant and humectant. However, it is less reactive and therefore products can stay stable longer.
Fucus Vesiculosus Extract
Est. %0.3
Function
Origin
Fucus Vesiculosus ExtractAn extract from a brown sea algae called bladderwrack. It was shown to increase skin elasticity in one study and boost collagen and HA production in another. Polysaccharides are able to treat irritated and dry skin.
Arnica Montana Flower Extract
Est. %0.3
Function
Origin
Arnica Montana Flower ExtractAn extract derived from the flower heads of the mountain arnica plant. This plant is used as herbal medicine to treat wounds, bruises, and inflammation. In skincare, however, it is mostly added for fragrance purposes due to its pleasant pine and sage odor.
Hippophae Rhamnoides Fruit Extract
Est. %0.3
Function
Origin
Hippophae Rhamnoides Fruit Extract
Helianthus Annuus (Sunflower) Seed Oil
Est. %0.3
Function
Origin
Helianthus Annuus (Sunflower) Seed OilA fatty oil expressed from sunflower seeds and one of the most commonly used oils in skincare. It has great emollient and occlusive moisturizing properties. Sunflower oil is one of the richest sources of vitamin E – an important skin antioxidant.
Linum Usitatissimum (Linseed) Seed Oil
Est. %0.3
Function
Origin
Linum Usitatissimum (Linseed) Seed OilAn emollient and occlusive fatty oil pressed from flax seeds. It is the richest source of linolenic fatty acid (it contains up to 50% of it) among vegetable oils.
Oenothera Biennis (Evening Primrose) Oil
Est. %0.3
Function
Origin
Oenothera Biennis (Evening Primrose) OilAn occlusive moisturizing and emollient fatty oil expressed from the seeds of a yellow-flowered plant which often opens its flowers in the evening (hence the name). It is light and suitable for problematic, eczematous, and inflammation-prone skin.
Prunus Armeniaca (Apricot) Kernel Oil
Est. %0.3
Function
Origin
Prunus Armeniaca (Apricot) Kernel OilA fatty oil expressed from the seed kernels of apricot fruits. This oil is an emollient and occlusive moisturizer comprised of around 60% oleic acid, followed by linoleic and palmitic acid, carotenoids, vitamin E, and other antioxidant compounds.
Prunus Persica (Peach) Kernel Oil
Est. %0.3
Function
Origin
Prunus Persica (Peach) Kernel Oil
Ethylcellulose
Est. %0.3
Function
Origin
Ethylcellulose
Citric Acid
Est. %0.3
Function
Origin
Citric AcidA gently exfoliating AHA that helps to remove the top layer of dead skin cells. In comparison to other AHAs, citric acid has been shown to be one of the least effective. It is also very commonly used as a stabilizing and pH-controlling agent.
Myristic Acid
Est. %0.3
Function
Origin
Myristic AcidA common fatty acid found in various vegetable oils, most notably palm and coconut oil. It is a strongly occlusive moisturizing, emollient, and emulsifying ingredient.
Dimethicone Crosspolymer
Est. %0.3
Function
Origin
Dimethicone CrosspolymerA group of ingredients that are typically added to skincare products to adjust the formula. Dimethicone Crosspolymers stabilize a formula, regulate its thickness and consistency and give the product a velvety feel.
HDI/Trimethylol Hexyllactone Crosspolymer
Est. %0.3
Function
Origin
HDI/Trimethylol Hexyllactone CrosspolymerAn anticaking agent that prevents a product from forming lumps. It also increases slip and produces an elegant finish in skincare formulations.
Glyceryl Acrylate/Acrylic Acid Copolymer
Est. %0.3
Function
Origin
Glyceryl Acrylate/Acrylic Acid CopolymerA synthetic humectant moisturizer often paired with glycerin. It also functions as a viscosity-controlling agent that creates gel-like formulas with thicker textures.
Carbomer
Est. %0.3
Function
Origin
CarbomerA synthetic ingredient with the ability to gel water. When used in emulsions, such as lotions and creams, carbomer can also act as an emulsion stabilizer.
Polysilicone-11
Est. %0.3
Function
Origin
Polysilicone-11A synthetic rubber-like substance of the silicone family that has no color or distinct scent. These are large molecules that cannot penetrate the skin but instead create a thin silky film on the skin's surface.
Xanthan Gum
Est. %0.3
Function
Origin
Xanthan GumA natural multi-functional ingredient that originates from fermented sugars. Xanthan gum acts as a viscosity-building agent to thicken skincare products. It is also an excellent stabilizer and works well to hold other ingredients together.
Hexylene Glycol
Est. %0.3
Function
Origin
Hexylene GlycolA multifunctional ingredient that is best known for its use as a solvent. It can dissolve both water-based ingredients and oils. For this reason, it can also function as an emulsifier, allowing oil and water ingredients to mix and remain stable.
Caprylyl Glycol
Est. %0.3
Function
Origin
Caprylyl GlycolAn emollient that improves product spreadability and offers a silky feel on the skin. It also acts as a preservative booster that improves the efficacy of other preservatives. According to the manufacturer, it is also a humectant moisturizer.
Butylene Glycol
Est. %0.3
Function
Origin
Butylene Glycol

A clear, colorless liquid humectant that draws moisture to the skin. The humectancy of butylene glycol, owed to its two hydroxyl groups, is quite considerable, although not as powerful as glycerin, which contains three hydroxyl groups.

Butylene Glycol Cocoate
Est. %0.3
Function
Origin
Butylene Glycol Cocoate
Potassium Sorbate
Est. %0.3
Function
Origin
Potassium SorbateA preservative widely used in food and personal care products, available from natural sources or synthetically produced. Potassium sorbate works by inhibiting the growth of yeasts, molds, and some bacteria.
Sodium Hydroxide
Est. %0.3
Function
Origin
Sodium Hydroxide

An ingredient that is able to bring the pH of a product up, thereby making it less harsh on the skin.

Sodium Benzoate
Est. %0.3
Function
Origin
Sodium BenzoateA preservative that usually works in combination with other preservatives. It has to be at low pH (<5.5) to be effective.
Ethylhexylglycerin
Est. %0.3
Function
Origin
EthylhexylglycerinA preservative booster derived from glycerin. It is commonly paired with other preservatives to improve their efficacy. Ethylhexylglycerin is also a humectant due to its chemical base of glycerin.
Phenoxyethanol
Est. %0.3
Function
Origin
PhenoxyethanolThe most frequently used preservative in skincare. It is a clear, oil-like liquid synthetic substance that protects products from harmful bacteria and yeast, whilst still leaving skin microflora unharmed. It is confirmed by research to be harmless.
Silica
Est. %0.3
Function
Origin
SilicaA widely used cosmetic ingredient with the same chemical composition as the sand found on beaches. A common function of silica is its ability to control viscosity. In certain chemical forms, it can effectively thicken cream-style products.
Mica
Est. %0.3
Function
Origin
MicaA mineral powder made up of silicates with several functions (the main one being as a colorant). It has a shimmery appearance, making it highly desirable in certain cosmetic products. Mica also helps the product to apply more smoothly.