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Related applications of 1,6-BIS(2,3-EPOXYPROPOXY)NAPHTHALENE(cas: 27610-48-6)

March 13, 2026

Product Manager: Selina Zhang; Email: selina@coreychem.com

Product Name 1,6-BIS(2,3-EPOXYPROPOXY)NAPHTHALENE
Synonyms Oxirane,2,2′-[1,6-naphthalenediylbis(oxyMethylene)]bis-;2,2′-((naphthalene-1,6-diylbis(oxy))bis(methylene))bis(oxirane);1,6-BIS(2,3-EPOXYPROPOXY)NAPHTHALENE;2,2′-[1,Chemicalbook6-naphthalenediylbis(oxymethylene)]bis-Oxirane;1,6-Bis(2,3-epoxypropan-1-yloxy)naphthalene;1,6-Bis(glycidyloxy)naphthalene;EBA-65;1,6-Bis(oxiranylmethoxy)naphthalene
CAS NO 27610-48-6
Epoxy value, equivalent/100g

0.69-0.73

Appearance

At room temperature, it is a colorless to yellow-brown viscous liquid that is prone to crystallization.

MF C16H16O4
MW 272.3
Contact selina@coreychem.com

 

1,6-Bis(2,3-Epoxypropoxy)Naphthalene (CAS: 27610-48-6) is a multifunctional epoxy compound widely used in polymer chemistry, advanced material research, and specialty chemical synthesis. Featuring a naphthalene core with two terminal epoxy groups, it provides high reactivity for crosslinking and network formation while maintaining structural rigidity. Its primary applications are outlined below:


1. Polymer Chemistry & Material Research

High-Performance Thermosetting Polymers

1,6-Bis(2,3-Epoxypropoxy)Naphthalene is used as a key monomer for the synthesis of thermosetting resins with enhanced thermal stability, mechanical strength, and chemical resistance. Its rigid aromatic core contributes to high-performance polymer networks suitable for coatings, adhesives, and composites.

Crosslinking Agent

The diepoxide functionality allows precise crosslinking control in polymer formulations, enabling tailored properties for high-performance materials in industrial and research applications.


2. Specialty Chemical & Fine Material Applications

Intermediate for Advanced Epoxy Derivatives

The compound serves as a building block for the synthesis of customized epoxy resins, oligomers, and functionalized polymers, supporting the development of specialty coatings, electronic materials, and structural composites.

Functional Material Development

Its aromatic epoxy structure is ideal for laboratory and industrial R&D projects, including advanced material testing, formulation optimization, and high-performance composite manufacturing.


3. Research & Development Applications

Experimental Resin Design

Researchers use this compound to explore structure–property relationships in epoxy networks, enabling evaluation of thermal, mechanical, and chemical performance of new polymer systems.

Analytical & Process Optimization

The compound is also utilized as a reference or reactive intermediate in formulation studies, helping to optimize polymerization conditions and curing protocols for novel materials.


4. Handling & Storage

Storage Conditions

Store in tightly sealed containers under cool, dry conditions to prevent moisture uptake and maintain chemical stability.

Intended Use

1,6-Bis(2,3-Epoxypropoxy)Naphthalene is intended for research, development, and industrial applications. It is not for direct pharmaceutical or food use without proper regulatory evaluation.


Summary

The value of 1,6-Bis(2,3-Epoxypropoxy)Naphthalene lies in its combination of reactive epoxy groups and a rigid naphthalene backbone. This unique structure enables the synthesis of high-performance thermosetting polymers, advanced composites, and specialty epoxy derivatives, supporting innovation in polymer science, materials development, and specialty chemical research.

 
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