L'Oréal Elvive Hyaluron Plus Pure 72H Purifying Shampoo for Oily Hair vs Wella Invigo Blonde Recharge Cool Blonde Purple Shampoo

The L'Oréal Elvive Hyaluron Plus Pure 72H Purifying Shampoo for Oily Hair and the Wella Invigo Blonde Recharge Cool Blonde Purple Shampoo cater to different hair concerns. The Wella shampoo is specifically formulated for blonde hair, targeting brassiness and enhancing brightness, while the L'Oréal option is aimed at oily hair, focusing on cleansing without over-drying. Both products share several ingredients, including Sodium Laureth Sulfate and Cocamidopropyl Betaine, which serve as surfactants, but they differ in their additional components. The L'Oréal shampoo incorporates Sodium Hyaluronate for added moisture retention, which is not present in the Wella formula. This distinction may make the L'Oréal product more appealing to those with oily hair seeking hydration. Ultimately, the choice between these two shampoos will depend on individual hair type and specific needs.

Match
75%
Price
$6.49
Category
Haircare
Type
Shampoo
Ingredients
13 ingredients
Buy
Match
75%
Price
$21.00
Category
Haircare
Type
Shampoo
Ingredients
22 ingredients
Buy

What's inside

What's inside

Key ingredients

Key ingredients

Benefits

Benefits

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Concerns

Concerns

Ingredients Explained

Water

Solvent · Shared

Aqua, commonly known as water, serves primarily as a solvent in cosmetic formulations. It is the most abundant ingredient in many products and is essential for dissolving other ingredients, facilitating their application and absorption on the skin. Formulators often add Aqua to create a suitable texture and consistency, ensuring that products are easy to spread and apply. Additionally, water can help to hydrate the skin, making it a vital component in many moisturizing formulations.

SODIUM LAURETH SULFATE

Cleansing Agent, Emulsifying Surfactant, Foaming Agent, Cleansing Surfactant · Shared

SODIUM LAURETH SULFATE is a versatile ingredient commonly used in cosmetic formulations for its cleansing and surfactant properties. As a surfactant-emulsifying agent, it helps to reduce surface tension, allowing for better mixing of oil and water components in a product. This function is particularly useful in creating stable emulsions. Additionally, its foaming capabilities contribute to the texture and sensory experience of products, making them more appealing during use. Overall, formulators may add SODIUM LAURETH SULFATE to enhance the effectiveness and user experience of cleansing products.

Cocamidopropyl Betaine

Antistatic, Cleansing Agent, Foam-Boosting Surfactant, Hair Conditioner, Cleansing Surfactant, Viscosity Controller, Other Skin Conditioner, Surfactant · Shared

Cocamidopropyl Betaine is an ingredient classified as a surfactant. Surfactants are compounds that can reduce surface tension between two substances, which can enhance the mixing and dispersing of ingredients in a formulation. This property is particularly useful in cosmetic products, as it can help improve the overall texture and performance of the formulation, allowing for better application and distribution on the skin or hair.

Fragrance

Fragrance · Shared

Fragrance, also known as Parfum or Aroma, is a complex mixture of aromatic compounds used in cosmetics to impart a pleasant scent. Its primary function is to enhance the sensory experience of a product, making it more appealing to consumers. Formulators may add Fragrance to mask the natural odors of other ingredients or to create a signature scent that differentiates a product in the market. However, it's important to note that Fragrance can be a potential irritant for some individuals, which is a consideration for formulators when developing products.

SODIUM CHLORIDE

Bulking Agent, Fragrance, Oral Care, Viscosity Controller · Shared

SODIUM CHLORIDE, commonly known as table salt, is a versatile ingredient used in cosmetics for various functions. It acts as a bulking agent, helping to increase the volume of formulations without significantly altering their properties. Additionally, it can serve as a viscosity-controlling agent, allowing formulators to adjust the thickness of products to achieve desired textures. In some cases, it may also enhance fragrance stability or contribute to oral-care formulations. Due to its multifaceted roles, SODIUM CHLORIDE is a valuable component in the development of a wide range of cosmetic products.

Citric Acid

Buffering Agent, Chelating Agent, Fragrance, Exfoliant, Active Ingredient, pH Adjuster · Shared

Citric Acid is an organic acid commonly found in citrus fruits and is widely used in cosmetic formulations for its multifunctional properties. As an exfoliant, it helps to remove dead skin cells, promoting a smoother and more radiant complexion. Additionally, it serves as a pH adjuster, ensuring that products maintain an optimal acidity level for skin compatibility. Formulators may add Citric Acid to enhance the overall efficacy of a product and to improve its stability. However, it is important to note that it can be a potential irritant for some individuals, necessitating careful consideration in formulation.

Sodium Benzoate

Anticorrosive, Fragrance, Preservative · Shared

Sodium Benzoate is a widely used preservative in cosmetics and personal care products. It functions primarily to inhibit the growth of bacteria, yeast, and mold, thereby extending the shelf life of formulations. Formulators may add Sodium Benzoate to ensure the stability and safety of products, particularly those that contain water, as these are more susceptible to microbial contamination. Its effectiveness and low toxicity make it a popular choice in various cosmetic applications.

Sodium Hydroxide

Buffering Agent, Denaturant, pH Adjuster · Shared

Sodium Hydroxide is a highly alkaline compound commonly used in cosmetics primarily as a pH adjuster. It helps to modify the acidity or alkalinity of formulations, ensuring that products maintain a stable and effective pH level for skin compatibility. Formulators may add Sodium Hydroxide to enhance the performance of other ingredients, improve product stability, and ensure that the overall formulation meets the desired specifications for safety and efficacy.