Estee Lauder Double Wear Stay-in-Place EyeShadow Base Review

Estee Lauder Double Wear Stay-in-Place EyeShadow Base
0.3
/ 10
Moisturizing
0.3 Humectancy icon Humectancy
0.3 Occlusivity icon Occlusivity
Review

Does Estee Lauder Double Wear Stay-in-Place EyeShadow Base Work?

 
According to CreamScan AI's analysis of the ingredient list, here’s what Estee Lauder Double Wear Stay-in-Place EyeShadow Base has to offer:
 
✅ A bit of moisturizing. It has a moisturizing rating of 0.3 out of 10.

  

Key Benefits of Estee Lauder Double Wear Stay-in-Place EyeShadow Base

 
These are the key benefits you can expect from using Estee Lauder Double Wear Stay-in-Place EyeShadow Base:
 

🔵 Slight Moisturizing When Used Alone

According to CreamScan analysis, Estee Lauder Double Wear Stay-in-Place EyeShadow Base is slightly moisturizing, with a moisturizing rating of 0.3 out of 10.

Is it more humectant or occlusive? This product has relatively comparable levels of Humectancy and Occlusivity: a low Humectancy of 0.3 out of 10 and a low Occlusivity of 0.3 out of 10.

This type of product provides relatively light moisturizing on its own but can contribute to overall moisturizing efficacy when used as part of a skincare routine, alongside another moisturizer.

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 AI model to incorporate anti-pigmentation, exfoliation and anti-acne ratings.

Things to Be Aware Of: Estee Lauder Double Wear Stay-in-Place EyeShadow Base

 
CreamScan AI identified a few things to consider before adding Estee Lauder Double Wear Stay-in-Place EyeShadow Base to your skincare routine:
 

⚠️ As a Standalone Moisturizer, It Has Relatively Low Moisturizing Potential

If you use Estee Lauder Double Wear Stay-in-Place EyeShadow Base for moisturizing purposes, please keep in mind that it provides relatively light moisturizing on its own, and, more importantly, it’s not optimal for any skin type.

On one hand, it has low occlusivity, which suits oily and combination skin. On the other hand, it has a low estimated concentration of humectants, which are essential for effective moisturizing of all skin types, including oily skin.

Therefore, if used as a standalone moisturizer, this product should be paired with a humectant-rich moisturizer for optimal skin hydration.

Pros & Cons of Estee Lauder Double Wear Stay-in-Place EyeShadow Base

 
Here’s an overview of the pros and cons of Estee Lauder Double Wear Stay-in-Place EyeShadow Base to help you decide if it’s the right choice for your skincare routine:
 

🟩 Pros:

Provides relatively light moisturizing on its own but can contribute to the moisturizing efficacy of any skincare routine
 

⭕ Cons: 

⚠️ Minimal moisturizing efficacy, even for oily skin - something to keep in mind if this is the only moisturizer in your routine
   

Summary: Estee Lauder Double Wear Stay-in-Place EyeShadow Base

 
Based on the ingredient list analysis, CreamScan AI suggests that Estee Lauder Double Wear Stay-in-Place EyeShadow Base
, as a moisturizer, provides relatively light hydration on its own but can enhance the moisturizing efficacy of any skincare routine.
 
That said, there are some things about Estee Lauder Double Wear Stay-in-Place EyeShadow Base worth noting.
 
If you use Estee Lauder Double Wear Stay-in-Place EyeShadow Base as your primary moisturizer, please keep in mind that it provides only light hydration, which isn’t actually ideal for any skin type. While its low occlusivity may work for oily and combination skin, it lacks sufficient humectants, which are vital for effective hydration of any skin type. Therefore, for optimal moisturizing results, it should be paired with a humectant-rich moisturizer.
 
📌 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.

 

Ingredients

Est. % Ingredient Origin Functions
40
22
11
6
4
3
2
1.5
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
Est. %
Isododecane
Function:
Origin:
Isodecyl Isononanoate
Function:
Origin:
Kaolin
Function:
Origin:
Polyethylene
Function:
Origin:
Dimethicone Silylate
Function:
Origin:
Isocetyl Alcohol
Function:
Origin:
Silica
Function:
Origin:
Hydrogenated Coco-Glycerides
Function:
Origin:
Polymethylsilsesquioxane
Function:
Origin:
HDI/Trimethylol Hexyllactone Crosspolymer
Function:
Origin:
Hydrogenated Polyisobutene
Function:
Origin:
Hydrogenated Ethylene/Propylene/Styrene Copolymer
Function:
Origin:
Phenyl Trimethicone
Function:
Origin:
Euphorbia Cerifera (Candelilla) Wax
Function:
Origin:
Calcium Aluminum Borosilicate
Function:
Origin:
Lecithin
Function:
Origin:
Disteardimonium Hectorite
Function:
Origin:
Isostearyl Palmitate
Function:
Origin:
Ethylene/Methacrylate Copolymer
Function:
Origin:
Triethyl Citrate
Function:
Origin:
Isopropyl Titanium Triisostearate
Function:
Origin:
Tocopheryl Acetate
Function:
Origin:
Titanium Dioxide (CI 77891)
Function:
Origin:
Iron Oxides (CI 77491)
Function:
Origin:
Iron Oxides (CI 77492)
Function:
Origin:
Iron Oxides (CI 77499)
Function:
Origin:
Manganese Violet (CI 77742)
Function:
Origin:
Yellow 5 Lake (CI 19140)
Function:
Origin:
Chromium Oxide Greens (CI 77288)
Function:
Origin:
Chromium Hydroxide Green (CI 77289)
Function:
Origin:
Carmine (CI 75470)
Function:
Origin:
Bismuth Oxychloride (CI 77163)
Function:
Origin:
Mica
Function:
Origin:
Ferric Ferrocyanide (CI 77510)
Function:
Origin:
Aluminum Powder (CI 77000)
Function:
Origin:
Bronze Powder (CI 77400)
Function:
Origin:
Blue 1 Lake (CI 42090)
Function:
Origin:
Ultramarines (CI 77007)
Function:
Origin:

Ratings

All humectants
0.3
0.3
Benchmark
10
All occlusives
0.6
0.3
0.3
Benchmark
20
Moisturizing rating
0.3
Ingredient Est. % Benchmark Raiting
Humectancy All humectants 0.3 10
0.3
0.3
Occlusivity All occlusives 0.6 20
0.3
0.3
0.3
Moisturizing rating
0.3
Ingredient Est. % Benchmark Humectancy
0.3
All humectants 0.3 10
0.3
All humectants
0.3
0.3
Benchmark
10
Ingredient Est. % Benchmark Occlusivity
0.3
0.3
All occlusives 0.6 20
0.3
All occlusives
0.6
0.3
0.3
Benchmark
20
Ingredient
Ingredient anti-wrinkle power
when present at, %
in this formula est. %
Rating
None
Total
0
None
Anti-wrinkle rating
0
Ingredient Est. % Benchmark
Rich in Antioxidants
0.3
All antioxidants 0.3 3 No
All antioxidants
0.3
Tocopheryl Acetate
0.3
Benchmark
3
Ingredient Est. % Benchmark
Rich in Soothing
None
All soothing 0 5 No
All soothing
0
None
Benchmark
5

Ingredients explained

Isododecane
Est. %40
Function
Origin
IsododecaneAn emollient derived from petroleum with high spreadability. It is often used as a replacement for oils and silicones because it leaves no residue behind on the skin. When a product is labeled as “oil-free” it may contain isododecane instead of heavier oils.
Isodecyl Isononanoate
Est. %22
Function
Origin
Isodecyl Isononanoate
Kaolin
Est. %11
Function
Origin
KaolinA type of mineral clay milled into a white, very fine powder. It is able to absorb sweat and oil, which then helps to keep the skin matte. The larger particles of kaolin are used in skin scrubs as an abrasive ingredient.
Polyethylene
Est. %6
Function
Origin
PolyethyleneCommonly used in dense plastic packaging, its primary function in skincare is as a film-forming agent, which protects the product from being easily rinsed away by water or sweat. It also controls viscosity by increasing the thickness of oily products.
Dimethicone Silylate
Est. %4
Function
Origin
Dimethicone Silylate
Isocetyl Alcohol
Est. %3
Function
Origin
Isocetyl Alcohol
Silica
Est. %2
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.
Hydrogenated Coco-Glycerides
Est. %1.5
Function
Origin
Hydrogenated Coco-GlyceridesA vegetable-derived stabilized oily solid that can act as an alternative to petroleum jelly. Like petroleum jelly it can bring creaminess to a formula.
Polymethylsilsesquioxane
Est. %1
Function
Origin
PolymethylsilsesquioxaneA type of spherical powder that functions on a ball-bearing effect in which the tiny microspheres roll around on the skin and create lubricity. Polymethylsilsesquioxane offers extra slip to skincare products and makes the skin feel soft and smooth.
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.
Hydrogenated Polyisobutene
Est. %0.3
Function
Origin
Hydrogenated PolyisobuteneA viscous liquid that makes a great oil base due to its smooth sensorial profile. It has emollient features, including good spreadability and little tack upon application. It also has the added benefit of being able to thicken products.
Hydrogenated Ethylene/Propylene/Styrene Copolymer
Est. %0.3
Function
Origin
Hydrogenated Ethylene/Propylene/Styrene Copolymer
Phenyl Trimethicone
Est. %0.3
Function
Origin
Phenyl TrimethiconeA silicone fluid that is used as an occlusive moisturizer. It applies smoothly to the skin and reduces the tack associated with organic oils.
Euphorbia Cerifera (Candelilla) Wax
Est. %0.3
Function
Origin
Euphorbia Cerifera (Candelilla) WaxA thick wax obtained from the stems of the Candelilla, or wax plant that is native to Mexico and the southern USA. Its stems are covered in wax to protect the plant from water loss. It is an occlusive moisturizing and emollient ingredient.
Calcium Aluminum Borosilicate
Est. %0.3
Function
Origin
Calcium Aluminum BorosilicateA naturally-derived ingredient common in color cosmetics such as powder eyshadows and blush. It provides a light shine and can have colors coated onto it.
Lecithin
Est. %0.3
Function
Origin
LecithinA humectant, emollient, and emulsifier best suited for water-in-oil emulsions. Lecithin can come from sunflowers, soy, and eggs. The downside to lecithin is that it causes an extra burden on the formula’s preservative because it is nutritious.
Disteardimonium Hectorite
Est. %0.3
Function
Origin
Disteardimonium HectoriteA clay ingredient that functions primarily as a viscosity controlling agent that thickens all types of formulas. Disteardimonium hectorite imparts a smooth, velvety feel, making it a luxurious addition to any formula.
Isostearyl Palmitate
Est. %0.3
Function
Origin
Isostearyl Palmitate
Ethylene/Methacrylate Copolymer
Est. %0.3
Function
Origin
Ethylene/Methacrylate Copolymer
Triethyl Citrate
Est. %0.3
Function
Origin
Triethyl Citrate
Isopropyl Titanium Triisostearate
Est. %0.3
Function
Origin
Isopropyl Titanium Triisostearate
Tocopheryl Acetate
Est. %0.3
Function
Origin
Tocopheryl Acetate

An antioxidant derivative of tocopherol (vitamin E). It helps to protect cells from free radicals and UV damage through the conversion to active vitamin E in the skin. It is more stable than tocopherol.

Titanium Dioxide (CI 77891)
Est. %0.3
Function
Origin
Titanium Dioxide (CI 77891)One of two the most commonly used mineral sunscreens. It can absorb UV light, including UVB – which causes burning, tanning, and even skin cancer. Also used as a colorant, titanium dioxide gives a product a bright white color.
Iron Oxides (CI 77491)
Est. %0.3
Function
Origin
Iron Oxides (CI 77491)A red colorant also known as red iron oxide. This is an EU-approved colorant used in a wide variety of products.
Iron Oxides (CI 77492)
Est. %0.3
Function
Origin
Iron Oxides (CI 77492)Also known as iron (III) oxide, this ingredient is a yellow-colored pigment that can either be derived from minerals or produced synthetically. It adds yellow tones to cosmetic products.
Iron Oxides (CI 77499)
Est. %0.3
Function
Origin
Iron Oxides (CI 77499)A black colorant also known as black iron oxide used in a wide range of skincare products.
Manganese Violet (CI 77742)
Est. %0.3
Function
Origin
Manganese Violet (CI 77742)
Yellow 5 Lake (CI 19140)
Est. %0.3
Function
Origin
Yellow 5 Lake (CI 19140)
Chromium Oxide Greens (CI 77288)
Est. %0.3
Function
Origin
Chromium Oxide Greens (CI 77288)
Chromium Hydroxide Green (CI 77289)
Est. %0.3
Function
Origin
Chromium Hydroxide Green (CI 77289)
Carmine (CI 75470)
Est. %0.3
Function
Origin
Carmine (CI 75470)
Bismuth Oxychloride (CI 77163)
Est. %0.3
Function
Origin
Bismuth Oxychloride (CI 77163)An inorganic colorant that gives off a pearly white sheen. Its appearance is a result of light reflecting and refracting through the layers it forms.
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.
Ferric Ferrocyanide (CI 77510)
Est. %0.3
Function
Origin
Ferric Ferrocyanide (CI 77510)
Aluminum Powder (CI 77000)
Est. %0.3
Function
Origin
Aluminum Powder (CI 77000)
Bronze Powder (CI 77400)
Est. %0.3
Function
Origin
Bronze Powder (CI 77400)
Blue 1 Lake (CI 42090)
Est. %0.3
Function
Origin
Blue 1 Lake (CI 42090)
Ultramarines (CI 77007)
Est. %0.3
Function
Origin
Ultramarines (CI 77007)