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C12-14 ALKYL GLYCIDYL ETHER


C12-14 Alkyl Glycidyl Ether is an aliphatic glycidyl ether mixture used primarily as a reactive diluent and flexibilizer in epoxy resin systems.
C12-14 Alkyl Glycidyl Ether contains a glycidyl (epoxy) group attached to a C12–C14 alkyl chain, and C12-14 Alkyl Glycidyl Ether reduces epoxy viscosity while co-reacting into the cured network to improve processing and adjust flexibility and hydrophobicity.
C12-14 Alkyl Glycidyl Ether must be handled carefully because epoxide materials can irritate skin and eyes and can cause skin sensitization, so C12-14 Alkyl Glycidyl Ether use requires appropriate PPE, ventilation, and good industrial hygiene.

CAS Number: 68609-97-2 (commonly associated; mixture)
EC Number: 271-846-8 (commonly associated; mixture listing)
Molecular Formula: Variable (C12–C14 alkyl glycidyl ether mixture)
Molecular Weight: Variable (mixture; chain length distribution dependent)

Synonyms: C12-14 Alkyl Glycidyl Ether, C12-14 AGE, Alkyl Glycidyl Ether C12-14, Aliphatic Glycidyl Ether C12-14, C12-14 Epoxy Diluent, Reactive Diluent C12-14 AGE, C12-14 Oxirane Ether, Glycidyl Ether Reactive Diluent, Lauryl/Myristyl Glycidyl Ether Mixture, Long-Chain Glycidyl Ether, C12-C14 Monoepoxide Diluent, C12-14 Alkyl Oxirane, C12-14 Alkyl Glycidyl Ether, C12-14 alkyl glycidyl ether, C12–14 Alkyl Glycidyl Ether, C12/14 Alkyl Glycidyl Ether, C12 C14 Alkyl Glycidyl Ether, C12-C14 Alkyl Glycidyl Ether, C12-14 AGE, AGE C12-14, Alkyl Glycidyl Ether (C12-14), Alkyl glycidyl ether (C12-14), C12-14 Aliphatic Glycidyl Ether, C12-14 aliphatic glycidyl ether, C12-14 Fatty Alkyl Glycidyl Ether, Fatty Alkyl Glycidyl Ether C12-14, Long Chain Alkyl Glycidyl Ether (C12-14), Mixed C12-14 Glycidyl Ethers, Mixed Alkyl Glycidyl Ethers (C12-14), C12-14 Glycidyl Ether (alkyl), Glycidyl Ether (C12-14 alkyl), Glycidyl Ether Reactive Diluent (C12-14), Reactive Diluent C12-14 AGE, Reactive Diluent (C12-14 Alkyl Glycidyl Ether), Epoxy Reactive Diluent C12-14, Epoxy Diluent (C12-14 Alkyl Glycidyl Ether), Monofunctional Epoxy Diluent (C12-14 AGE), Monoepoxide Reactive Diluent (C12-14 AGE), Aliphatic Reactive Diluent (C12-14 AGE), Alkyl Glycidyl Ether Epoxy Diluent (C12-14), Alkyl Glycidyl Ether Viscosity Reducer (C12-14) (use context),

APPLICATIONS


C12-14 Alkyl Glycidyl Ether is used as a reactive diluent in epoxy floor coatings to reduce viscosity and improve flow and leveling.
C12-14 Alkyl Glycidyl Ether is incorporated into high-build epoxy coatings to improve wetting of fillers and pigments while lowering solvent demand.
C12-14 Alkyl Glycidyl Ether is used in low-VOC epoxy coatings where reactive diluents replace volatile solvents.

C12-14 Alkyl Glycidyl Ether is used in epoxy adhesives to improve substrate wetting and to adjust workable viscosity and open time.
C12-14 Alkyl Glycidyl Ether is incorporated into structural epoxy adhesives to increase flexibility and reduce brittleness in compatible formulations.
C12-14 Alkyl Glycidyl Ether is used in epoxy repair compounds to improve mixing and application workability in filled systems.

C12-14 Alkyl Glycidyl Ether is used in epoxy casting and potting compounds to reduce viscosity and improve bubble release during degassing.
C12-14 Alkyl Glycidyl Ether is incorporated into electrical potting resins to reduce stress cracking and improve toughness balance.
C12-14 Alkyl Glycidyl Ether is used in encapsulation resins to improve penetration into tight spaces and complex geometries.

C12-14 Alkyl Glycidyl Ether is used in epoxy laminating and infusion resins to improve wet-out of glass fiber and carbon fiber reinforcements.
C12-14 Alkyl Glycidyl Ether is incorporated into RTM and infusion systems to improve flow through fabrics and reduce void formation risk.
C12-14 Alkyl Glycidyl Ether is used in composite tooling resins to adjust flexibility and reduce brittleness in thick sections.

C12-14 Alkyl Glycidyl Ether is used in marine and industrial epoxy coatings to improve flexibility and reduce cracking under vibration and thermal cycling.
C12-14 Alkyl Glycidyl Ether is incorporated into tank linings and protective coatings to reduce water uptake and improve wet adhesion in compatible designs.
C12-14 Alkyl Glycidyl Ether is used in pipeline coatings to improve toughness and reduce brittle failure risk.

C12-14 Alkyl Glycidyl Ether is used in epoxy sealants and grouts to improve workability and reduce application viscosity in high-filler systems.
C12-14 Alkyl Glycidyl Ether is incorporated into crack injection epoxies to improve penetration into fine cracks while remaining reactive.
C12-14 Alkyl Glycidyl Ether is used in anchoring and fixing epoxies to improve flow and substrate wetting.

C12-14 Alkyl Glycidyl Ether is used as a flexibilizer in epoxy systems to improve impact resistance and reduce shrinkage stress in cured films.
C12-14 Alkyl Glycidyl Ether is incorporated into brittle epoxy networks to increase chain mobility and improve toughness.
C12-14 Alkyl Glycidyl Ether is used in epoxy formulations where hydrophobic alkyl segments improve water resistance and reduce moisture uptake.

C12-14 Alkyl Glycidyl Ether is used in reactive modifier packages to tune cure speed and crosslink density depending on hardener selection and temperature.
C12-14 Alkyl Glycidyl Ether is incorporated into amine-cured epoxies where it reacts into the network and changes final modulus and elongation.
C12-14 Alkyl Glycidyl Ether is used in anhydride-cured epoxies to improve processing and adjust flexibility in compatible systems.

C12-14 Alkyl Glycidyl Ether is used in epoxy-based inks and specialty coatings to reduce viscosity and improve substrate wetting in compatible curing systems.
C12-14 Alkyl Glycidyl Ether is incorporated into high-solids epoxy formulations where application viscosity must be controlled.
C12-14 Alkyl Glycidyl Ether is used in specialty resin systems where reactive diluents support improved processing without solvent emissions.

C12-14 Alkyl Glycidyl Ether is valued because C12-14 Alkyl Glycidyl Ether lowers viscosity while remaining reactive, and C12-14 Alkyl Glycidyl Ether improves processing, flexibility, and water resistance when formulated and dosed appropriately.
C12-14 Alkyl Glycidyl Ether is used as a reactive diluent in epoxy resin formulations to reduce viscosity.
C12-14 Alkyl Glycidyl Ether improves flow and wetting in solvent-free epoxy coatings and adhesives.
C12-14 Alkyl Glycidyl Ether helps increase application ease while remaining reactive during cure.

C12-14 Alkyl Glycidyl Ether is used in high-solids and low-VOC epoxy coatings to improve workability.
C12-14 Alkyl Glycidyl Ether supports higher solids content while maintaining leveling and film build.
C12-14 Alkyl Glycidyl Ether helps reduce roller marks and orange peel in applied coatings.

C12-14 Alkyl Glycidyl Ether is used in epoxy floor coatings to improve penetration into concrete and reduce roller marks.
C12-14 Alkyl Glycidyl Ether supports better wetting of porous mineral substrates.
C12-14 Alkyl Glycidyl Ether helps reduce pinholes and craters by improving flow and surface wetting.

C12-14 Alkyl Glycidyl Ether is used in epoxy primers for concrete and steel to improve substrate wetting.
C12-14 Alkyl Glycidyl Ether supports improved anchoring by penetrating surface profile.
C12-14 Alkyl Glycidyl Ether helps improve adhesion and reduce defects from poor wet-out.

C12-14 Alkyl Glycidyl Ether is used in epoxy tank linings to reduce viscosity for thick-film application.
C12-14 Alkyl Glycidyl Ether supports uniform coverage on complex geometries.
C12-14 Alkyl Glycidyl Ether helps improve edge coverage and reduces holidays by improving flow.

C12-14 Alkyl Glycidyl Ether is used in marine epoxy coatings to improve wetting on blasted steel and reduce application defects.
C12-14 Alkyl Glycidyl Ether supports better penetration into surface profile for adhesion.
C12-14 Alkyl Glycidyl Ether helps improve coating continuity under variable application conditions.

C12-14 Alkyl Glycidyl Ether is used in pipeline epoxy coatings to improve leveling and application viscosity control.
C12-14 Alkyl Glycidyl Ether supports consistent thickness at application temperature.
C12-14 Alkyl Glycidyl Ether helps reduce sag and improves coverage on weld seams and edges.

C12-14 Alkyl Glycidyl Ether is used in epoxy anticorrosion primers to improve pigment wetting and dispersion.
C12-14 Alkyl Glycidyl Ether supports reduced flocculation in pigment-rich formulations.
C12-14 Alkyl Glycidyl Ether helps maintain stable viscosity during storage and application.

C12-14 Alkyl Glycidyl Ether is used in epoxy adhesives to improve spreadability and substrate wetting.
C12-14 Alkyl Glycidyl Ether supports better wet-out on metals, composites, and many plastics.
C12-14 Alkyl Glycidyl Ether helps reduce voids by improving resin flow into surface texture.

C12-14 Alkyl Glycidyl Ether is used in structural epoxy adhesives to improve flexibility and peel resistance.
C12-14 Alkyl Glycidyl Ether supports reduced brittleness in cured networks at optimized levels.
C12-14 Alkyl Glycidyl Ether helps improve impact resistance in bonded joints.

C12-14 Alkyl Glycidyl Ether is used in epoxy grout and repair mortars to improve flow and mixability.
C12-14 Alkyl Glycidyl Ether supports easier wetting of aggregates and fillers.
C12-14 Alkyl Glycidyl Ether helps reduce trapped air and improves density of cured grout.

C12-14 Alkyl Glycidyl Ether is used in epoxy crack injection resins to improve penetration into microcracks.
C12-14 Alkyl Glycidyl Ether supports low-viscosity resin systems for structural repair.
C12-14 Alkyl Glycidyl Ether helps improve fill completeness and bond to crack walls.

C12-14 Alkyl Glycidyl Ether is used in epoxy anchoring adhesives to improve hole wetting and mixing behavior.
C12-14 Alkyl Glycidyl Ether supports better flow around rebar and threaded rods.
C12-14 Alkyl Glycidyl Ether helps reduce voids that reduce anchor performance.

C12-14 Alkyl Glycidyl Ether is used in epoxy casting resins to improve mold filling and degassing.
C12-14 Alkyl Glycidyl Ether supports easier bubble release by lowering viscosity.
C12-14 Alkyl Glycidyl Ether helps achieve clearer castings when formulation is optimized.

C12-14 Alkyl Glycidyl Ether is used in epoxy potting and encapsulation compounds to improve flow around components.
C12-14 Alkyl Glycidyl Ether supports reduced voids in electronic potting operations.
C12-14 Alkyl Glycidyl Ether helps improve wetting of housings and substrates for reliable encapsulation.

C12-14 Alkyl Glycidyl Ether is used in epoxy laminating resins for composites to improve fiber wet-out.
C12-14 Alkyl Glycidyl Ether supports improved impregnation of glass and carbon fabrics.
C12-14 Alkyl Glycidyl Ether helps reduce dry spots and resin-rich areas by optimizing flow.

C12-14 Alkyl Glycidyl Ether is used in vacuum infusion resins to extend flow distance in large composite parts.
C12-14 Alkyl Glycidyl Ether supports stable flow front in resin infusion processes.
C12-14 Alkyl Glycidyl Ether helps achieve high fiber volume fraction by reducing resin resistance.

C12-14 Alkyl Glycidyl Ether is used in filament winding epoxies to control viscosity for consistent winding and wet-out.
C12-14 Alkyl Glycidyl Ether supports production of pipes and pressure vessels with uniform resin distribution.
C12-14 Alkyl Glycidyl Ether helps reduce drip and improves surface finish in wound composites.

C12-14 Alkyl Glycidyl Ether is used in prepreg resin systems in selected formulations to tune viscosity and tack.
C12-14 Alkyl Glycidyl Ether supports improved impregnation during prepreg manufacture.
C12-14 Alkyl Glycidyl Ether helps optimize tack and drape properties of prepreg materials.

C12-14 Alkyl Glycidyl Ether is used in epoxy tooling resins to improve mold filling and reduce voids.
C12-14 Alkyl Glycidyl Ether supports better wetting of reinforcements and fillers in tooling laminates.
C12-14 Alkyl Glycidyl Ether helps improve surface finish and dimensional stability in cured tools.

C12-14 Alkyl Glycidyl Ether is used in epoxy-based clear coats to improve flow and reduce orange peel.
C12-14 Alkyl Glycidyl Ether supports smoother appearance in high-gloss coatings.
C12-14 Alkyl Glycidyl Ether helps improve leveling without adding volatile solvents.

DESCRIPTION


C12-14 Alkyl Glycidyl Ether is a mono-functional epoxide, meaning C12-14 Alkyl Glycidyl Ether typically contains one epoxy ring per molecule and a long hydrophobic alkyl chain that adds flexibility and water repellency.
C12-14 Alkyl Glycidyl Ether is typically supplied as a clear to pale yellow liquid, and C12-14 Alkyl Glycidyl Ether shows low viscosity compared with base epoxy resins.
C12-14 Alkyl Glycidyl Ether functions as a reactive diluent because C12-14 Alkyl Glycidyl Ether reduces viscosity before cure and then co-reacts with curing agents, becoming part of the final epoxy network.

C12-14 Alkyl Glycidyl Ether can reduce crosslink density compared with multifunctional epoxies, so C12-14 Alkyl Glycidyl Ether tends to increase elongation and reduce brittleness but may reduce heat resistance and hardness at high addition levels.
C12-14 Alkyl Glycidyl Ether can influence cure kinetics and pot life depending on hardener type, catalysts, and temperature, so formulation testing is required.
C12-14 Alkyl Glycidyl Ether can cause skin sensitization typical of epoxide materials, so dermal exposure should be minimized and contaminated clothing should be removed promptly.

C12-14 Alkyl Glycidyl Ether should be stored tightly closed and protected from moisture and contamination, and C12-14 Alkyl Glycidyl Ether should be kept away from strong acids, bases, and oxidizers.
C12-14 Alkyl Glycidyl Ether should be handled only by trained personnel using appropriate PPE and ventilation.
C12-14 Alkyl Glycidyl Ether should be disposed of according to local regulations and facility procedures for epoxy chemical waste.

C12-14 Alkyl Glycidyl Ether is a reactive diluent family typically consisting of monofunctional glycidyl ethers with C12 to C14 alkyl chains.
C12-14 Alkyl Glycidyl Ether contains an epoxide ring that reacts with curing agents during epoxy cure.
C12-14 Alkyl Glycidyl Ether is usually a clear to pale liquid with low to moderate viscosity compared with base epoxy resins.

C12-14 Alkyl Glycidyl Ether lowers epoxy formulation viscosity and improves wetting by reducing surface tension.
C12-14 Alkyl Glycidyl Ether becomes incorporated into the cured network through epoxide ring opening reactions.
C12-14 Alkyl Glycidyl Ether is typically monofunctional, so higher dosage can reduce crosslink density and lower heat resistance.

C12-14 Alkyl Glycidyl Ether can increase flexibility and impact resistance by introducing long alkyl segments into the network.
C12-14 Alkyl Glycidyl Ether can reduce hardness and chemical resistance if overused because it can act as a chain stopper.
C12-14 Alkyl Glycidyl Ether selection is formulation-specific because chain length affects compatibility, viscosity reduction, and final properties.

PROPERTIES


Chemical Type: Aliphatic glycidyl ether (monoepoxide) reactive diluent
Appearance: Clear to pale yellow liquid
Odor: Mild characteristic odor (grade dependent)
Solubility: Insoluble in water; miscible with many epoxy resins and compatible organic phases (system dependent)
Function: Reactive diluent, viscosity reducer, flexibilizer, hydrophobic modifier for epoxy systems
Epoxy Equivalent Weight: Grade dependent (depends on alkyl distribution and purity)
Viscosity: Low to moderate (typically much lower than base epoxy resins; grade dependent)
Reactivity: Epoxy ring reacts with amines and anhydrides; incorporated into epoxy networks during cure
Water Resistance: Can improve water repellency and reduce moisture uptake due to hydrophobic C12–C14 chain (formulation dependent)
Stability: Stable under recommended storage; avoid heat, contamination, strong acids/bases, and oxidizers
Storage Temperature: 10–30°C, tightly closed, dry, well ventilated
Shelf Life: Typically 12–24 months in original sealed packaging (supplier dependent)

FIRST AID


Inhalation:
Move to fresh air if vapors or mists are inhaled.
Seek medical attention if respiratory irritation persists.
Avoid breathing aerosols during spraying and high-shear mixing.

Skin Contact:
Remove contaminated clothing and wash skin thoroughly with soap and water.
Seek medical attention if irritation, rash, or sensitization symptoms develop.
Do not reuse contaminated clothing until it has been thoroughly washed or disposed of appropriately.

Eye Contact:
Rinse cautiously with water for several minutes.
Remove contact lenses if present and easy to do, then continue rinsing.
Seek medical attention promptly if irritation persists.

Ingestion:
Rinse mouth with water and seek medical attention promptly.
Do not induce vomiting unless directed by medical personnel.
Never give anything by mouth to an unconscious person.

Note to Physicians:
Treat symptomatically.
Consider epoxide sensitization potential and monitor for delayed skin reactions.
Provide supportive care based on exposure route and symptoms.

HANDLING AND STORAGE


Handling:
Use appropriate PPE including chemical-resistant gloves, goggles or face shield, and protective clothing.
Avoid skin contact because epoxide materials can cause sensitization after repeated exposure.
Do not spray without suitable engineering controls and respiratory protection when required by risk assessment.

Ventilation:
Use local exhaust ventilation at mixing, dosing, and application points.
Avoid confined spaces where vapors or mists can accumulate.
Use closed transfer systems where practical to minimize exposure.

Storage:
Store in tightly closed containers in a cool, dry, well-ventilated place.
Keep away from strong acids, strong bases, oxidizers, and reactive catalysts.
Protect from excessive heat and direct sunlight to maintain stability and consistent viscosity.

Spill and Leak Procedures:
Contain the spill and absorb with inert material.
Clean surfaces thoroughly because reactive liquids can create slip hazards and leave residues that continue to react.
Dispose of waste according to local regulations and facility procedures for epoxy chemical waste.

Handling Precautions:
Confirm compatibility and optimal dosage in the epoxy/hardener system to balance viscosity reduction, pot life, cure, and final properties.
Validate performance with testing because high levels of C12-14 Alkyl Glycidyl Ether can reduce heat resistance and hardness due to reduced crosslink density.
Rotate stock using FIFO practices and track opening dates to avoid moisture contamination and quality drift.

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