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What is MCT Oil (Medium Chain Triglycerides), and what are its primary sources?
MCT Oil, short for Medium-Chain Triglycerides, is a type of saturated fat composed of medium-chain fatty acids (MCFAs). The term “medium-chain” refers to the carbon chain length of these fatty acid molecules, which typically range from 6 to 12 carbon atoms (C6-C12).
Compared to long-chain triglycerides (LCTs), commonly found in everyday cooking oils like olive or soybean oil, MCTs have a smaller molecular structure, granting them unique physicochemical properties and physiological functions.
Primary Sources:
MCT oil is primarily produced through a fractionation process applied to natural vegetable oils. The most common raw materials are:- Coconut Oil
- Palm Kernel Oil
This process allows for the precise separation and enrichment of medium-chain fatty acids, while removing long-chain fatty acids, resulting in high-purity MCT oil.
JYT CHEMICAL’s MCT oil undergoes sophisticated refining and purification, ensuring its exceptional quality and stability for a wide range of high-end applications.
What is the difference between Medium Chain Triglycerides (MCT) and Caprylic/Capric Triglyceride (GTCC)?
This is an excellent and professional question. While closely related, there are key distinctions. Simply put, Caprylic/Capric Triglyceride (GTCC) is a specific, highly refined type of MCT, and one of the most widely used.
Here’s a detailed comparison:
Characteristic Caprylic/Capric Triglyceride (GTCC) Broad-sense MCT Oil INCI Name Caprylic/Capric Triglyceride Caprylic/Capric Triglyceride (if composition is identical) Main Components Primarily composed of C8 (Caprylic acid) and C10 (Capric acid) fatty acids. May contain a mixture of C6 (Caproic acid), C8 (Caprylic acid), C10 (Capric acid), and C12 (Lauric acid). Odor & Color Highly refined, virtually colorless and odorless. Good stability, but generally slightly less than pure GTCC. Skin Feel & Texture Extremely light, non-greasy, and fast-spreading. Relatively light skin feel, but may feel slightly heavier due to C12 content. Stability Excellent oxidative stability, resistant to rancidity, extending product shelf life. Good stability, but generally slightly less than pure GTCC. Primary Applications High-end emollient, solvent, and dispersing agent in cosmetics and personal care products. Widely used in food, nutritional supplements, and some industrial applications. Selection Guidance:
- If you are developing skincare creams, sunscreens, color cosmetics, or any product aiming for a light, non-greasy feel, Caprylic/Capric Triglyceride (GTCC) is your ideal choice.
- If you require a carrier oil for food, sports nutrition, or certain industrial sectors, broad-sense MCT oil might better suit your cost and functional requirements.
At JYT CHEMICAL, we offer various grades of MCT products, including those specifically optimized for cosmetics, to meet your diverse formulation needs.
What are the most common applications for MCT oil in cosmetics and food?
MCT oil, thanks to its unique stability, solubility, and sensory properties, enjoys broad and significant applications in both the cosmetics and food industries.
1. In Cosmetics and Personal Care Products:
- As an Emollient: Provides a light, silky, and non-greasy skin feel, effectively moisturizing the skin. Commonly used in face creams, lotions, serums, and body care products.
- As a Solvent and Carrier: An excellent solvent that helps dissolve oil-soluble active ingredients (e.g., Vitamins A, E) and UV filters, ensuring their even distribution in formulations.
- As a Dispersing Agent: In color cosmetics (e.g., foundations, lipsticks), it helps disperse pigments uniformly, enhancing product spreadability and finish.
- As a Makeup Remover Ingredient: Effectively dissolves waterproof makeup while being gentle and non-irritating to the skin.
2. In Food and Nutritional Supplements:
- As an Energy Source: MCTs are rapidly absorbed and metabolized by the body, providing quick energy. This makes them highly popular in ketogenic diets and sports nutrition products.
- As a Carrier Oil: Used to carry fat-soluble vitamins (e.g., A, D, E, K), flavors, and pharmaceutical active ingredients.
- As a Functional Ingredient: Added to energy bars, meal replacement shakes, and health beverages to aid in weight management and enhance athletic performance.
JYT CHEMICAL can supply high-quality MCT oil that meets the respective industry standards (e.g., cosmetic grade, food grade) for all the applications listed above.
What are the benefits of using MCT in skincare formulations compared to other vegetable oils (e.g., olive oil, sunflower oil)?
In skincare formulations, choosing MCT (especially Caprylic/Capric Triglyceride, GTCC) over traditional long-chain vegetable oils offers significant performance and sensory advantages:
- Superior Stability: MCTs are saturated fats with a highly stable chemical structure, making them extremely resistant to oxidative rancidity. This means products formulated with MCTs have a longer shelf life and are less prone to developing off-odors or discoloration, unlike many unsaturated vegetable oils (e.g., flaxseed oil, sunflower oil) which oxidize easily.
- Light, Non-Greasy Skin Feel: This is one of MCT’s most prominent benefits. It is rapidly absorbed by the skin, leaving a fresh, silky touch without the heavy, greasy residue often associated with traditional vegetable oils, greatly enhancing user experience.
- Low Comedogenic Potential: MCTs are widely considered non-comedogenic or very low-risk for clogging pores, making them highly suitable for formulations targeting oily and acne-prone skin types.
- Excellent Spreadability: With low viscosity, MCTs spread exceptionally well, allowing creams and lotions to glide smoothly over the skin, contributing to a pleasant application experience.
- Effective Solvent Capabilities: It effectively dissolves various oil-soluble active ingredients and UV filters, helping these functional components to penetrate and perform better.
In summary, MCTs provide formulators with a stable, elegantly textured, and functionally versatile base oil option, enabling the creation of high-performance, refreshing skincare products that consumers love.
Want to learn how our MCT products can optimize your formulations? Feel free to Contact Our Technical Team for expert advice.
What is Caprylic/Capric Triglyceride (GTCC) and why is it so widely used in cosmetics?
Caprylic/Capric Triglyceride (GTCC) is a specialized emollient and ester derived from coconut oil and palm kernel oil. It is a specific type of Medium Chain Triglyceride (MCT) primarily composed of fatty acids with 8 (caprylic) and 10 (capric) carbon atoms, esterified with glycerol.
It is widely used in cosmetics due to its exceptional properties:
- Superior Skin Feel: It provides a remarkably light, non-greasy, and silky feel on the skin, absorbing quickly without leaving a heavy residue.
- Excellent Stability: As a saturated ester, GTCC is highly resistant to oxidation and rancidity, significantly extending the shelf life of cosmetic formulations.
- Versatile Solvent: It’s an excellent solvent for oil-soluble active ingredients, vitamins, and UV filters, ensuring their even dispersion and efficacy.
- Non-Comedogenic: It is considered non-comedogenic, making it suitable for a wide range of skin types, including oily and acne-prone skin.
- Good Spreadability: Its low viscosity allows for easy spreading, enhancing the application experience of creams, lotions, and makeup.
JYT CHEMICAL’s GTCC is produced to the highest purity standards, making it an ideal choice for premium cosmetic formulations.
What are the key benefits of using Caprylic/Capric Triglyceride (GTCC) in skincare and hair care products?
Caprylic/Capric Triglyceride (GTCC) offers a multitude of benefits that elevate the performance and sensory experience of both skincare and hair care products:
For Skincare:
- Lightweight Emolliency: Provides effective moisturization without the greasiness of traditional oils, ideal for face creams, serums, and lotions.
- Enhanced Absorption: Helps active ingredients penetrate the skin more effectively due to its excellent spreading properties.
- Improved Texture: Contributes to a smooth, luxurious texture in products, enhancing spreadability and reducing tackiness.
- Non-Irritating: Gentle on the skin, suitable for sensitive skin types, and often used in baby care products.
- Stabilizer: Acts as a stabilizer for emulsions and helps prevent the oxidation of other sensitive ingredients.
For Hair Care:
- Light Conditioning: Provides light conditioning without weighing hair down, making it suitable for leave-in conditioners and styling products.
- Adds Shine: Imparts a healthy sheen to hair, improving its overall appearance.
- Reduces Frizz: Helps to smooth the hair cuticle, reducing frizz and improving manageability.
- Scalp Health: Its non-comedogenic nature makes it a good choice for scalp treatments, as it won’t clog pores.
JYT CHEMICAL provides high-purity GTCC that can significantly enhance the quality and appeal of your skincare and hair care lines.
How does Caprylic/Capric Triglyceride (GTCC) differ from other common emollients like mineral oil or silicones?
While mineral oil and silicones are also widely used emollients, Caprylic/Capric Triglyceride (GTCC) offers distinct advantages and characteristics that set it apart, particularly for formulators seeking natural-derived and high-performance alternatives:
Characteristic Caprylic/Capric Triglyceride (GTCC) Mineral Oil Silicones (e.g., Dimethicone) Origin Natural-derived (coconut/palm kernel oil) Petroleum-derived Synthetic (silicon-based) Biodegradability Readily biodegradable Not readily biodegradable Variable, some are not readily biodegradable Skin Feel Light, silky, non-greasy, fast-absorbing Occlusive, sometimes heavy/greasy feel Silky, smooth, often “slippery” feel Occlusivity Low to moderate occlusivity, allows skin to breathe Highly occlusive, forms a barrier on skin Moderate occlusivity, forms a breathable film Solvent Properties Excellent for oil-soluble actives, good pigment dispersant Good solvent for some oils, poor for others Good for some actives, but can be difficult to formulate with water-based ingredients Stability Excellent oxidative stability Very stable, inert Very stable, inert Comedogenicity Very low to non-comedogenic Potentially comedogenic for some skin types Generally non-comedogenic GTCC provides a unique balance of natural origin, superior sensory profile, and excellent functional properties, making it a preferred choice for clean beauty, natural formulations, and products requiring a sophisticated, non-greasy feel. It offers the best of both worlds: the performance of synthetic emollients with the appeal of natural derivatives.
Is Caprylic/Capric Triglyceride (GTCC) safe for all skin types, including sensitive or acne-prone skin?
Yes, Caprylic/Capric Triglyceride (GTCC) is widely considered safe and highly suitable for virtually all skin types, including sensitive and acne-prone skin. Its excellent safety profile is one of the primary reasons for its widespread use in high-quality cosmetic and personal care products.
Here’s why:
- Non-Irritating: GTCC is known for its mildness and is rarely associated with skin irritation or sensitization. It’s often used in formulations designed for sensitive skin, baby products, and even medical applications.
- Non-Comedogenic: Unlike some heavier oils that can clog pores, GTCC has a very low comedogenic rating. This means it is highly unlikely to cause breakouts or worsen acne, making it an excellent choice for individuals with acne-prone or oily skin.
- Lightweight and Breathable: Its light texture allows the skin to breathe, preventing the occlusive feeling that can sometimes exacerbate skin conditions.
- Stable and Pure: As a highly refined ingredient, JYT CHEMICAL’s GTCC is free from impurities that might otherwise cause adverse reactions. Its stability also means it won’t break down into irritating byproducts over time.
Formulators can confidently incorporate GTCC into a broad range of products, knowing it will deliver effective emolliency and sensory benefits without compromising skin health or causing adverse reactions.
For specific product specifications or safety data sheets, please contact JYT CHEMICAL directly.
What is Ethylhexyl Palmitate (2EHP) and what is its primary function in cosmetic formulations?
Ethylhexyl Palmitate (2EHP), also known as Octyl Palmitate, is a synthetic ester derived from 2-ethylhexanol and palmitic acid (a fatty acid found in palm oil). It is a clear, colorless, odorless liquid with a dry, silky feel, making it a highly versatile and popular ingredient in the cosmetic and personal care industry.
Its primary function in cosmetic formulations is to act as an emollient, solvent, and spreading agent. It is designed to provide a pleasant skin feel, enhance the spreadability of products, and help dissolve other oil-soluble ingredients.
JYT CHEMICAL’s Ethylhexyl Palmitate is manufactured to high purity standards, ensuring consistent quality and performance in your formulations.
What are the key benefits and applications of Ethylhexyl Palmitate (2EHP) in various cosmetic products?
Ethylhexyl Palmitate (2EHP) offers a range of benefits that make it a staple in diverse cosmetic applications:
- Excellent Emollient: It provides a smooth, soft, and non-greasy feel to the skin, effectively conditioning and moisturizing without a heavy residue.
- Superior Spreading Agent: Its low viscosity and high spreadability allow products to glide effortlessly over the skin, enhancing user experience in creams, lotions, and makeup.
- Effective Solvent: It is an excellent solvent for many oil-soluble active ingredients, pigments, and UV filters, ensuring their uniform dispersion and stability within a formulation. This is particularly useful in sunscreens and color cosmetics.
- Pigment Wetting Agent: In color cosmetics (e.g., foundations, lipsticks, mascaras), it helps to wet and disperse pigments, leading to better color payoff, smoother application, and reduced agglomeration.
- Non-Occlusive: While providing emolliency, it is generally considered non-occlusive, allowing the skin to breathe.
- Alternative to Mineral Oil/Silicones: It can serve as a plant-derived alternative to mineral oil or certain silicones, offering a similar sensory profile without the petroleum-derived or synthetic origin.
Common Applications:
- Skincare: Face creams, body lotions, serums, cleansing oils.
- Sun Care: Sunscreens (as a solvent for UV filters and spreading agent).
- Color Cosmetics: Foundations, concealers, lipsticks, mascaras, eyeshadows.
- Hair Care: Conditioners, styling products (for shine and conditioning).
- Makeup Removers: Effectively dissolves waterproof makeup.
JYT CHEMICAL’s Ethylhexyl Palmitate is a versatile ingredient that can significantly improve the texture, performance, and sensory appeal of your cosmetic products.
How does Ethylhexyl Palmitate (2EHP) compare to Caprylic/Capric Triglyceride (GTCC) in cosmetic formulations?
Both Ethylhexyl Palmitate (2EHP) and Caprylic/Capric Triglyceride (GTCC) are popular emollients in cosmetics, but they offer slightly different sensory profiles and functionalities, making them suitable for different formulation goals:
Characteristic Ethylhexyl Palmitate (2EHP) Caprylic/Capric Triglyceride (GTCC) INCI Name Ethylhexyl Palmitate Caprylic/Capric Triglyceride Chemical Structure Ester of 2-ethylhexanol and palmitic acid (C16 fatty acid) Ester of glycerol with C8 (caprylic) and C10 (capric) fatty acids Sensory Feel Dry, silky, powdery feel; less oily, good slip Very light, non-greasy, silky, fast-absorbing Viscosity Relatively low Very low Spreadability Excellent, good slip Excellent, very fast spreading Solvent Power Good for many oil-soluble ingredients, pigments, UV filters Excellent for oil-soluble ingredients, especially actives Oxidative Stability Good Excellent (due to shorter chain saturated fatty acids) Comedogenicity Generally considered low, but some sources suggest moderate potential for sensitive individuals. Very low to non-comedogenic. Primary Use Cases Makeup (pigment wetting), sunscreens (UV filter solvent), dry-touch emollients, mineral oil replacement. Skincare (light emollient), active ingredient carrier, natural/clean beauty formulations, non-comedogenic products. In essence, while both provide excellent emolliency, GTCC generally offers a lighter, faster-absorbing feel with superior oxidative stability and lower comedogenic risk. 2EHP provides a slightly drier, more powdery slip, making it particularly effective for pigment dispersion and as a sensory modifier in makeup and sunscreens. Formulators often use them synergistically to achieve desired textures and performance.
Is Ethylhexyl Palmitate (2EHP) considered safe for cosmetic use, and are there any regulatory concerns?
Yes, Ethylhexyl Palmitate (2EHP) is widely considered safe for use in cosmetic and personal care products at typical concentrations. It has been thoroughly reviewed by regulatory bodies and scientific panels globally.
- Regulatory Status: It is approved for use in cosmetics by major regulatory bodies such as the Cosmetic Ingredient Review (CIR) Expert Panel in the US, the European Union (EU), and other international authorities. The CIR Expert Panel concluded that Ethylhexyl Palmitate is safe as a cosmetic ingredient.
- Safety Profile: Studies have shown it to be non-irritating and non-sensitizing to the skin. While some sources suggest a very low to moderate comedogenic potential for highly sensitive individuals, it is generally well-tolerated and not considered a significant concern for most users.
- Non-Toxic: It has a low oral toxicity and is not considered a genotoxic or carcinogenic substance.
- Environmental Considerations: As an ester, it is generally biodegradable, though its rate of degradation can vary.
JYT CHEMICAL ensures that its Ethylhexyl Palmitate meets stringent quality and purity standards, adhering to all relevant cosmetic regulations. Formulators can confidently incorporate 2EHP into their products, leveraging its functional benefits while maintaining a strong safety profile.
For detailed safety data sheets or regulatory documentation, please contact JYT CHEMICAL directly.
What is Coco-Caprylate/Caprate and why is it often called a "natural silicone" alternative?
Coco-Caprylate/Caprate is a 100% natural-derived, plant-based emollient. It is an ester produced from coconut-derived fatty alcohols (coco) and a specified blend of caprylic and capric fatty acids. It is a very popular ingredient in “clean beauty” and natural formulations.
It is often called a “natural silicone” alternative because its sensory profile closely mimics that of volatile silicones like Cyclomethicone:
- Fast Spreading & Volatility: It spreads very quickly and easily upon application and has a light, almost volatile feel, leaving behind a non-greasy, powdery after-feel.
- Silky Glide: It imparts a significant amount of slip and glide to formulations, improving the application experience of creams and lotions.
- Lightweight & Non-Greasy: It provides emollience without weighing down the skin or hair, making it ideal for a wide range of products.
- Biodegradable: Unlike many silicones, it is readily biodegradable, which is a key requirement for Ecocert/COSMOS certified products.
Formulators choose JYT CHEMICAL’s Coco-Caprylate/Caprate when they want the elegant, silky feel of silicones but require a natural, sustainable, and biodegradable ingredient for their skincare, hair care, or makeup products.
What is the difference between Cetyl Ethylhexanoate and Ethylhexyl Palmitate? They seem similar.
This is an excellent question, as both are popular emollients. While they share some similarities, their subtle differences in structure lead to distinct sensory profiles, making them suitable for different applications.
Characteristic Cetyl Ethylhexanoate Ethylhexyl Palmitate (2EHP) Structure Ester of Cetyl Alcohol (C16, straight-chain) and Ethylhexanoic Acid. Ester of 2-Ethylhexyl Alcohol (C8, branched-chain) and Palmitic Acid (C16). Sensory Feel Richer, more “cushiony” and substantive feel. Provides a soft, conditioning emollience. Lighter, drier, more “powdery” feel with excellent slip. Application Feel Feels more like a classic cream or lotion emollient. Feels more like a “dry oil” or silicone-like fluid. Primary Use Cases Moisturizing creams, lotions, and cleansing oils where a soft, conditioning feel is desired. Makeup (pigment wetting), sunscreens (UV filter solvent), and products where a dry, non-greasy slip is paramount. In summary: Choose Cetyl Ethylhexanoate for a soft, cushiony emollience. Choose Ethylhexyl Palmitate for a lighter, drier, more powdery slip. JYT CHEMICAL offers both high-purity esters to allow formulators to precisely tailor the final texture of their products.
What are the unique properties of Tridecyl Trimellitate and in which products is it a key ingredient?
Tridecyl Trimellitate is a high molecular weight, viscous ester that is functionally very different from the light emollients discussed above. Its unique properties make it a problem-solver and a key performance ingredient in specific categories.
Its unique properties include:
- High Viscosity & Richness: It has a thick, cushiony texture that provides a substantive and long-lasting film on the skin or lips.
- Excellent Gloss & Shine: It is an exceptional glossing agent, imparting a high-shine, wet-look finish.
- Superior Adhesion & Wear: The film it forms adheres well to the skin, improving the long-wear properties of color cosmetics.
- Good Pigment Binder: Its viscosity and binding properties make it useful in pressed powders and other makeup formulations.
Key Applications:
- Lip Products: It is a star ingredient in lip glosses (for shine and cushion) and lipsticks (for gloss, adhesion, and preventing feathering).
- Color Cosmetics: Used as a binder in pressed eyeshadows and blushes, and to add longevity and a dewy finish to cream foundations.
- High-End Skincare: Incorporated into rich night creams and barrier repair products for its substantive, protective film.
When you need long-lasting gloss, cushion, and adhesion, especially in lip products, JYT CHEMICAL’s Tridecyl Trimellitate is an indispensable choice.
How do other esters like Ethylhexyl Stearate and Triethylhexanoin fit into a formulator's toolkit?
Ethylhexyl Stearate and Triethylhexanoin are valuable emollients that offer distinct sensory points on the emollient spectrum, allowing for fine-tuning of product feel.
Ethylhexyl Stearate:
- What it is: An ester of 2-Ethylhexyl Alcohol and Stearic Acid (C18).
- Sensory Profile: It is richer and more occlusive than its palmitate (C16) counterpart. It provides a soft, buttery feel with good conditioning properties.
- Best for: Formulations where a bit more richness and barrier function are desired without the heaviness of petrolatum or waxes. Think rich body creams, foot creams, and conditioning makeup removers. It’s a classic, cost-effective workhorse emollient.
Triethylhexanoin:
- What it is: A tri-ester of glycerin and 2-ethylhexanoic acid. It is a very stable, branched-chain triglyceride.
- Sensory Profile: Extremely light, dry, and non-oily with excellent spreadability. It is highly prized for its elegant and refreshing skin feel.
- Best for: High-end, lightweight formulations. It is very popular in Asian beauty (J-Beauty, K-Beauty) for creating light-as-air serums, emulsions, and especially high-performance cleansing oils, where it provides superior makeup solvency with a clean rinse-off.
By understanding this spectrum—from the light, dry feel of Triethylhexanoin to the rich conditioning of Ethylhexyl Stearate—a formulator can create any desired texture. JYT CHEMICAL provides a comprehensive portfolio of these esters to meet all your formulation needs. Contact our experts for a recommendation.
What is the fundamental role of 2-Ethylhexanoic Acid (2-EHA), Isononanoic Acid (INA), and 2-Propylheptanoic Acid (2-PHA) in industrial chemistry?
2-Ethylhexanoic Acid (2-EHA), Isononanoic Acid (INA), and 2-Propylheptanoic Acid (2-PHA) are key examples of synthetic, branched-chain carboxylic acids. Their fundamental role in industrial chemistry is as versatile chemical intermediates, primarily for the synthesis of high-performance esters and metal salts.
The branched structure of these acids is crucial. It imparts unique properties to their derivatives, such as:
- Enhanced Hydrolytic Stability: Resistance to degradation by water, important for lubricants and coatings.
- Improved Thermal and Oxidative Stability: Allows derivatives to perform under extreme temperature conditions without breaking down.
- Excellent Solubility and Compatibility: Enables their use in diverse formulations, from non-polar oils to polymer matrices.
- Reduced Volatility: Leads to longer product lifespan and less environmental impact.
These acids are the foundational building blocks for creating advanced materials that meet stringent performance requirements in various industries. JYT CHEMICAL ensures the consistent supply of these high-purity acids, critical for the quality of downstream products.
How does the choice between 2-EHA, INA, and 2-PHA impact the performance of synthetic lubricants and plasticizers?
The selection among 2-EHA, INA, and 2-PHA directly influences the final performance characteristics of their ester derivatives, particularly in synthetic lubricants and plasticizers. This choice is primarily driven by the desired balance of cost, thermal stability, and low-temperature properties.
Acid Type Carbon Chain Key Performance Impact Typical Applications 2-Ethylhexanoic Acid (2-EHA) C8 - Good all-around performance.
- Cost-effective for many applications.
- Standard for paint driers, general industrial lubricants.
- Standard polyol esters (e.g., for refrigeration oils).
- PVC and PVB plasticizers (e.g., Triethylene Glycol bis(2-Ethylhexanoate)).
- Metal salts for coatings.
Isononanoic Acid (INA) C9 - Improved thermal and oxidative stability over 2-EHA.
- Lower volatility, extending service life.
- Better low-temperature flow properties.
- High-performance aviation lubricants.
- Advanced industrial gear oils.
- Premium cosmetic emollients (e.g., Isononyl Isononanoate).
2-Propylheptanoic Acid (2-PHA) C10 - Superior thermal and oxidative stability.
- Extremely low volatility, even at high temperatures.
- Excellent hydrolytic stability.
- Ultra-high temperature chain oils.
- Specialty greases for extreme environments.
- Next-generation synthetic base stocks.
Formulators leverage these differences to precisely engineer products for specific operating conditions and performance demands. JYT CHEMICAL’s technical team can provide detailed specifications and guidance for optimal acid selection.
What is "3GO Plasticizer" (also known as Flexol 3GO), and what are its specific advantages and applications?
“3GO Plasticizer” is a common industry term for Triethylene Glycol bis(2-Ethylhexanoate). It is also known by trade names such as Flexol 3GO. This is a specialty ester plasticizer derived from Triethylene Glycol and 2-Ethylhexanoic Acid.
Its specific advantages and applications stem from its unique chemical structure:
- Excellent Low-Temperature Flexibility: 3GO plasticizer is particularly effective at maintaining the flexibility and impact resistance of polymers at very low temperatures, outperforming many general-purpose plasticizers.
- Good UV Stability: It offers better resistance to UV degradation compared to some other plasticizers, making it suitable for outdoor applications.
- Low Volatility: Contributes to the long-term durability of the plasticized material by minimizing plasticizer loss over time.
- Compatibility: Exhibits good compatibility with a range of polymers, especially PVC and PVB.
Primary Applications:
- PVB Interlayers: This is its most critical application. 3GO plasticizer is widely used in the production of Polyvinyl Butyral (PVB) films, which are the interlayers in laminated safety glass (e.g., automotive windshields, architectural safety glass). It provides the necessary adhesion, optical clarity, and impact resistance.
- Specialty PVC Compounds: Used in PVC formulations requiring enhanced low-temperature performance, such as wire and cable insulation, automotive interiors, and certain flexible films.
JYT CHEMICAL supplies high-quality 2-Ethylhexanoic Acid, a key raw material for the synthesis of 3GO plasticizer, supporting the production of critical safety and performance materials.
Orders & Samples
How can I request a sample for formula testing?
To request a sample, please contact our sales or technical team with product name, application purpose, desired sample size, and delivery address. Our sample process is designed to support R&D and evaluation before bulk purchase.
What are your sample quantities and policies?
Typical lab/sample sizes range from small laboratory quantities up to several kilograms depending on product and safety regulations. For larger evaluation batches or pilot scale, please specify required volume when you inquire so we can advise on feasibility and lead time.
What is your Minimum Order Quantity (MOQ)?
MOQ depends on product grade (industrial, cosmetic, food) and packaging option. We tailor MOQ and commercial terms to customer needs—please request a formal quotation to receive exact MOQ for the product of interest.
How do I obtain a price quote?
Request a formal quotation by emailing product name, required quantity, desired packaging, target delivery terms (EXW / FOB / CIF), and destination port or address. Providing intended application and any specification needs (e.g., cosmetic or food grade) helps us match the correct product grade and pricing.
What documents come with an order (TDS / SDS / COA)?
Each shipment is normally accompanied by a Certificate of Analysis (COA). Technical Data Sheets (TDS) and Safety Data Sheets (SDS) are available on request or can be provided prior to shipment to support regulatory review and formulation work.
What are your lead times and delivery terms?
Standard lead times vary by product and order size; please request current lead time in your RFQ. We supply both domestic and international shipments and will confirm estimated delivery time in the quotation.
Do you support international shipping and which packaging options do you offer?
Yes, we support international transportation and multiple packaging formats to meet logistics and regulatory requirements. Supported packaging options include Drum, IBC (Intermediate Bulk Container), and ISOtank for bulk liquid shipments.
What are payment and export documentation requirements?
Payment terms are specified in the quotation and may include advance payment, L/C, or other agreed terms. Export documentation (commercial invoice, packing list, COA, SDS, and any regulatory certificates) will be provided as required for customs clearance.
Can you provide procurement guidance for bulk buying (supply stability, specifications)?
Yes, we provide procurement support and buyer guidance, including specification checklists and advice on supply-chain stability and COA interpretation to help customers avoid common procurement mistakes.
Who should I contact for orders, samples, or technical questions?
For sales and sample requests, please contact our sales team via email at info@jytchem.com or leave a message in our website.
Quality & Compliance
How does JYT CHEMICAL ensure product quality and batch-to-batch consistency?
JYT CHEMICAL maintains standardized analytical testing and internal quality controls that verify each production batch against established specifications; Certificates of Analysis (COA) are issued for shipments to document these results.
Are your products manufactured under GMP or sold with food/pharmaceutical claims?
Product dossiers indicate that many technical-grade products are not manufactured under GMP and JYT does not make food or pharmaceutical grade claims unless explicitly stated; customers should request product-specific statements if such a grade is required.
What analytical methods and test limits are available for product evaluation?
Analytical methods referenced in product dossiers and sales specifications (for example GC methods and specified moisture limits) are used to verify product quality; these methods and limits can be shared on request.
How does JYT CHEMICAL handle traceability?
JYT CHEMICAL maintains product traceability program appropriate for technical grade products; customers can request details relevant to their purchases.
What disclaimers or responsibilities should customers note regarding product use?
Published product information is provided based on current knowledge and is intended as guidance; it does not constitute a warranty of specific properties or suitability for a particular use, and users are responsible for verifying regulatory approval and suitability for their intended purpose. Customers must follow SDS instructions and ensure adequately trained personnel handle products.
How can I obtain compliance documents or ask a regulatory question?
For COA, TDS, SDS, regulatory dossiers or compliance queries please contact our team at info@jytchem.com or your JYT sales representative; include product name, lot number (if applicable) and the specific document request.
Technical Support
What technical support does JYT CHEMICAL offer
Our technical support can provide product information, recommended handling, recommended use levels (where published), analytical methods, TDS, SDS and COA to assist customers in their own R&D and application testing
Who should I contact for technical inquiries or urgent issues?
For technical inquiries or escalation, contact info@jytchem.com or your JYT sales representative; mark urgent issues clearly in the subject line and provide all relevant batch and test information to speed up the response.
How do I request technical documents or ask a regulatory/compliance question?
Request TDS, SDS, COA or regulatory information by contacting our team with product name and lot number; include a clear document request so we can provide the appropriate files
Can you support pilot trials or provide evaluation batches?
We can discuss supply of sample sizes or evaluation batches for customer testing; however, supplying material for customer trials is not equivalent to providing formulation services or formulation design work.
