WANOL F3135 is a trade formulation rather than a single defined molecule, WANOL F3135 is best understood as a functional ingredient with application-specific performance characteristics rather than a standard chemical with a fixed structure.
WANOL F3135s behavior depends strongly on the system it is used in, including concentration, temperature, and surrounding ingredients.
WANOL F3135 makes it important to evaluate it through technical datasheets rather than simple chemical classification.
CAS Number: 9082-00-2
Molecular Formula: C8H22O7
Molecular Weight: 194.23
EINECS Number: 208-750-2
Synonyms: Ethylene oxide-propylene oxide copolymer glycerol ether, 9082-00-2, Oxirane, 2-methyl-, polymer with oxirane, ether with 1,2,3-propanetriol (3:1), GLYCEROL PROPOXYLATE-B-ETHOXYLATE;1,2,3-Propanetriol,polymerwithmethyloxiraneandoxirane;Glycerol,ethyleneoxide,propyleneoxidepolymer;Glycerolpoly(oxyethylene,oxypropylene)ether;Oxirane,methyl-,polymerwithoxirane,etherwith1,2,3-propanetriol(3:1);Glycerol polyethylene-propylene glycol ether;Glycerol propoxylate-block-ethoxylate average Mn ~4,000;Glycerol propoxylate-block-ethoxylate average Mn ~5,300
WANOL F3135 is a commercial trade name/code for a proprietary chemical formulation, most commonly used as a functional ingredient in industrial or cosmetic systems such as emulsions, coatings, or surfactant-based products.
WANOL F3135s exact chemical composition is typically not publicly disclosed in full detail, because it is manufactured as a proprietary blend designed for specific performance properties rather than a single pure compound.
WANOL F3135, materials like this are engineered to improve stability, mixing behavior, or surface activity in formulated products.
In many cases, products under similar naming systems are associated with nonionic surfactants, polymeric emulsifiers, or performance additives that help oil and water phases mix more effectively in formulations.
These types of ingredients are chosen for their ability to stabilize emulsions and improve texture or consistency in complex mixtures.
This makes them common in cosmetics, detergents, coatings, and industrial formulations.
WANOL F3135 is best understood as a performance-grade formulation additive rather than a single defined chemical substance, meaning its behavior is designed at the product level to achieve specific physical effects such as emulsification, stabilization, or surface modification in complex mixtures.
Because it is a trade-coded material, its exact composition is typically optimized for industrial performance rather than disclosed as a single molecular structure.
This makes its function more important than its exact chemical identity in most applications.
In formulation science, materials like WANOL F3135 are often designed to control interfacial tension between oil and water phases, which allows them to stabilize emulsions that would otherwise separate over time.
WANOL F3135 stabilization occurs through adsorption at interfaces and modification of droplet surface properties in emulsified systems.
This makes it highly relevant in colloid and interface chemistry.
In many industrial systems, additives of this type also improve rheology control, meaning they influence viscosity, flow behavior, and texture of final products without significantly altering chemical reactivity.
This allows manufacturers to fine-tune product consistency such as thickness, spreadability, or spray behavior.
WANOL F3135 makes them important in product engineering and manufacturing control.
In cosmetic science, materials like WANOL F3135 can contribute to sensory properties such as smoothness, spreadability, and non-greasy feel, which are important for user experience in creams, lotions, and sunscreen formulations.
They also help maintain long-term stability under temperature changes and storage conditions.
This makes them critical in personal care product development.
In industrial chemical systems, similar polymeric or surfactant-based additives can also act as compatibilizers between otherwise immiscible components, improving uniformity in coatings, detergents, and specialty chemical blends.
This ensures consistent performance across large-scale production batches.
WANOL F3135 makes them essential for manufacturing reliability.
WANOL F3135 is typically classified as a functional polymeric or surfactant-based formulation aid used in complex industrial and cosmetic systems, where its main purpose is to modify physical behavior such as mixing, stability, and texture rather than act as a chemically reactive substance.
Because it is produced as a proprietary grade, its exact composition and molecular structure are usually optimized for performance rather than fully disclosed in public chemical databases.
WANOL F3135 makes it a “performance material” rather than a conventional single-compound chemical.
In interfacial chemistry terms, materials like WANOL F3135 are designed to reduce interfacial tension and stabilize dispersed systems by positioning themselves at oil–water boundaries, where they prevent droplets from merging and phase separation from occurring over time.
This stabilization effect is crucial in emulsions that must remain stable under temperature changes, mechanical stress, or long storage periods.
WANOL F3135 makes it essential in long-life formulation systems.
In rheological systems, additives like WANOL F3135 can influence flow behavior by modifying internal microstructure, which changes viscosity, elasticity, and spread characteristics without altering the chemical identity of the main formulation components.
This allows manufacturers to tune whether a product feels thick, light, creamy, or fluid depending on application requirements.
WANOL F3135 makes it highly important in product design optimization.
In stability engineering, such materials are often evaluated for their ability to maintain colloidal stability under stress conditions such as heating, cooling, centrifugation, or long-term storage, where unstable systems would normally separate into layers.
Their effectiveness is measured through parameters like droplet size distribution and phase separation resistance.
WANOL F3135 makes them important in quality control and formulation testing.
In cosmetic and dermatological formulations, ingredients of this type are selected not only for physical stability but also for sensory performance and skin compatibility, ensuring that products feel smooth, non-sticky, and evenly spreadable while remaining stable over time.
They are often combined with other surfactants, oils, and polymers to achieve balanced performance profiles.
WANOL F3135 makes them key components in modern skincare engineering.
Density: 1.02 g/mL at 25 °C
vapor density: >1 (vs air)
vapor pressure: <0.3 mm Hg (20 °C)
Flash point: >230 °F
solubility: H2O: <0.1% (w/w) at 25 °C
form: liquid
Viscosity: 725 cP (25 °C) (lit.)
Water Solubility: H2O: <0.1% (w/w) at 25 °C
InChI: 1S/C3H8O3.C3H6O.C2H4O/c4-1-3(6)2-5;1-3-2-4-3;1-2-3-1/h3-6H,1-2H2;3H,2H2,1H3;1-2H2
InChIKey: CESZUODSLPRJDU-UHFFFAOYSA-N
SMILES: C(O)(CO)CO.C1OC1.CC1OC1
WANOL F3135-type materials are generally designed to provide emulsification, dispersion stability, and improved compatibility between hydrophilic and hydrophobic components in formulated products.
This allows otherwise incompatible ingredients like oils and water to remain evenly mixed over time.
WANOL F3135 makes them essential in many industrial formulation technologies.
In cosmetic and personal care systems, ingredients of this type are often used to improve texture, spreadability, and stability of creams, lotions, and gels.
They help prevent phase separation and improve product consistency during storage and use.
WANOL F3135 makes them important for product quality and consumer experience.
In industrial formulations such as coatings or cleaning systems, similar materials can act as wetting agents or dispersants that improve the distribution of solids and liquids in a mixture.
WANOL F3135 helps ensure uniform application and performance of the final product.
This makes them useful in paints, coatings, and specialty chemical systems.
WANOL F3135 is best understood as a proprietary formulation-grade surfactant or polymeric additive designed to control physical behavior in multi-phase systems rather than act as a single defined chemical compound, meaning its performance is engineered for emulsification, stabilization, and texture control in complex industrial or cosmetic mixtures.
Because it is trade-coded, its exact molecular composition is typically optimized for functionality and kept confidential by manufacturers.
This makes its role more important than its precise chemical identity in most applications.
In colloid and interface science, materials like WANOL F3135 function by adsorbing at phase boundaries between immiscible liquids such as oil and water, where they reduce interfacial tension and prevent droplet coalescence through steric or electrostatic stabilization mechanisms.
This helps maintain long-term emulsion stability even under mechanical stress or temperature fluctuations.
WANOL F3135 makes it essential in emulsion technology and formulation chemistry.
In formulation engineering, such additives are also used to control microstructure formation within mixtures, where they influence droplet size distribution, viscosity behavior, and overall rheological response of the final product.
These properties directly affect how a product pours, spreads, or sprays in practical use conditions.
WANOL F3135 makes it important in industrial product design and optimization.
In stability testing, materials like WANOL F3135 are evaluated under accelerated aging conditions such as heating, cooling cycles, centrifugation, and long-term storage simulations to ensure that emulsions remain physically stable without phase separation or performance loss.
These tests help determine shelf life and formulation robustness.
WANOL F3135 makes it important in quality assurance and product validation.
In personal care science, such ingredients are selected not only for stability but also for sensory performance, ensuring that final products feel smooth, non-greasy, easily spreadable, and cosmetically acceptable while maintaining structural integrity over time.
They are often combined with oils, humectants, and thickeners to balance feel and function.
WANOL F3135 makes it a key component in cosmetic formulation design.
Uses Of WANOL F3135:
WANOL F3135 is used in the production of polyurethane foams.
WANOL F3135 is used as a formulation additive, emulsifier, and stability enhancer because it helps control the physical structure and mixing behavior of complex chemical systems.
WANOL F3135s main role is not to act as an active chemical but to improve how other ingredients interact.
This makes it a functional supporting ingredient in many formulations.
In cosmetic products, it is used to stabilize creams, lotions, sunscreens, and other emulsified systems by preventing separation of oil and water phases.
WANOL F3135 also helps improve texture and product uniformity over time.
This makes it important in personal care formulation design.
In industrial applications, it is used in coatings, cleaning agents, and specialty chemical mixtures where stable dispersion of ingredients is required for performance consistency.
It improves the long-term stability and usability of formulated products.
This makes it valuable in manufacturing and product engineering.
WANOL F3135 is used as a formulation stabilizer, emulsifier, rheology modifier, and compatibility enhancer because it improves how different chemical components interact in complex mixtures without necessarily being an active chemical ingredient itself.
Its role is mainly physical and structural rather than reactive or biochemical.
This makes it a supporting but essential ingredient in many formulations.
In cosmetic and personal care products,WANOL F3135 is used in creams, lotions, sunscreens, and emulsified gels to maintain long-term stability and prevent phase separation between oil and water components.
WANOL F3135 also improves texture, spreadability, and overall product feel on the skin.
This makes it important for cosmetic formulation performance and consumer acceptance.
In industrial applications, it is used in coatings, cleaning formulations, and specialty emulsions where consistent dispersion and stability of ingredients are required for reliable product performance.
WANOL F3135 helps maintain uniformity during storage, transport, and application.
WANOL F3135 makes it valuable in manufacturing and product consistency control.
WANOL F3135 is used as a formulation stabilizer, emulsifying agent, rheology modifier, and compatibility enhancer, where its primary function is to improve physical structure, stability, and usability of multi-component chemical systems rather than serve as an active chemical ingredient.
It is particularly valuable in systems where oil, water, and polymer phases must remain uniformly mixed over long periods.
This makes it a core supporting ingredient in advanced formulation design.
In cosmetic and personal care products, it is used in creams, lotions, sunscreens, and emulsified gels to maintain uniform texture, prevent separation, and improve application properties on the skin.
WANOL F3135 helps ensure consistent sensory feel and product stability even under temperature or storage variations.
This makes it important for consumer product quality and performance consistency.
In industrial applications, it is used in coatings, cleaning formulations, and specialty emulsions, where it improves dispersion of ingredients and ensures uniform performance during application and storage.
WANOL F3135 also helps stabilize complex mixtures that would otherwise separate or lose effectiveness over time.
This makes it valuable in manufacturing reliability and process engineering.
WANOL F3135 is used as a formulation stabilizer, emulsifier, rheology modifier, and compatibility enhancer because it improves the physical structure and long-term stability of complex multi-component systems without acting as a primary reactive ingredient.
Its main role is to ensure that otherwise incompatible ingredients such as oil and water remain evenly dispersed and stable.
WANOL F3135 makes it a foundational supporting material in formulation chemistry.
In cosmetic and personal care products, it is used in creams, lotions, sunscreens, gels, and emulsified skincare systems to prevent phase separation and improve texture, spreadability, and product uniformity.
It helps maintain consistent performance even under varying storage temperatures or usage conditions.
WANOL F3135 makes it essential for consumer product quality and stability.
In industrial applications, it is used in coatings, detergents, cleaning agents, and specialty emulsions, where it enhances dispersion stability and ensures consistent performance of complex mixtures during manufacturing and application.
WANOL F3135 helps prevent separation, sedimentation, or uneven distribution of ingredients.
This makes it valuable in manufacturing reliability and process control.
WANOL F3135 is used as a formulation stabilizer, emulsifier, rheology modifier, and compatibility enhancer because it improves the physical structure and long-term stability of complex multi-phase systems without acting as a primary reactive chemical ingredient.
It helps maintain uniform dispersion of oil and water phases and prevents separation during storage and use.
This makes it essential in advanced formulation chemistry.
In cosmetic and personal care products, it is used in creams, lotions, sunscreens, gels, and emulsified skincare formulations to improve texture, spreadability, and product consistency while preventing phase separation.
WANOL F3135 ensures that the product remains smooth and stable even under temperature changes and long shelf life conditions.
This makes it important for consumer product performance and sensory quality.
In industrial applications, it is used in coatings, detergents, cleaning agents, and specialty emulsions where stable dispersion of multiple components is required for consistent performance.
WANOL F3135 helps control viscosity, improves application behavior, and prevents sedimentation or separation of ingredients.
This makes it valuable in manufacturing and process reliability.
In chemical formulation systems, it is used to improve compatibility between otherwise immiscible ingredients, allowing oils, polymers, and aqueous phases to remain stable in a single uniform product.
WANOL F3135 reduces formulation instability and improves reproducibility in large-scale production.
WANOL F3135 makes it important in industrial product engineering.
In product development and testing, it is used to optimize rheological and physical properties such as thickness, flow behavior, and stability under stress conditions like heating, cooling, and mechanical mixing.
These properties are critical for ensuring consistent product performance during transport and use.
WANOL F3135 makes it useful in quality control and formulation optimization.
Safety Profile Of WANOL F3135:
WANOL F3135 is generally considered low hazard in normal industrial and cosmetic use, since it is designed as a formulated additive rather than a highly reactive or toxic chemical.
However, like many surfactant-based materials, it may still cause mild irritation if handled in concentrated form.
This makes basic protective handling practices advisable.
Direct contact with the skin or eyes may lead to mild irritation or discomfort, especially with prolonged or repeated exposure in industrial settings.
This effect depends strongly on concentration and formulation context.
WANOL F3135 makes gloves and eye protection recommended during handling of bulk material.
Inhalation of aerosols or dust from concentrated forms may cause temporary respiratory irritation, although significant toxicity is generally not expected under normal use conditions.
Proper ventilation reduces this risk in manufacturing environments.
WANOL F3135 makes standard workplace safety procedures sufficient for most applications.
WANOL F3135 is generally regarded as a low-to-moderate hazard material under normal handling conditions, since it is designed for use in formulated products rather than as a highly reactive or toxic chemical substance.
Most safety concerns are related to irritation potential rather than systemic toxicity or severe chemical reactivity.
WANOL F3135 makes it relatively safe when handled according to standard industrial guidelines.
Direct contact with concentrated material may cause mild skin or eye irritation, especially with prolonged or repeated exposure in manufacturing environments.
The severity of irritation typically depends on concentration and formulation context.
WANOL F3135 makes personal protective equipment such as gloves and goggles advisable during handling.