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2, 6-Naphthalenedicarboxylic Acid CAS 1141-38-4 | China Suppliers & Factory | White Powder
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2, 6-Naphthalenedicarboxylic Acid CAS 1141-38-4 | China Suppliers & Factory | White Powder

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Product Description

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Product Name: 2, 6-Naphthalenedicarboxylic Acid

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CAS No: 1141-38-4  |  Formula Weight: 216.19

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Molecular Formula: C12H8O4

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Appearance: White or off-white powder.

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As a trusted manufacturer in China, we supply high-quality 2, 6-Naphthalenedicarboxylic Acid that adheres to strict industry standards. Our factory is equipped to deliver this essential chemical compound, characterized by its white or off-white powder form, ideal for various applications in the chemical industry. Partner with reliable suppliers to enhance your production processes with our premium products.

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    What is 2,6-Naphthalenedicarboxylic Acid (2,6-NDA)?

    2,6-Naphthalenedicarboxylic Acid (CAS No. 1141-38-4), commonly referred to as 2,6-NDA, is a pivotal aromatic dicarboxylic acid with the chemical formula C₁₂H₈O₄ and a molecular weight of 216.19 g/mol. It presents as a white, crystalline solid with an exceptionally high melting point exceeding 300°C, renowned for its remarkable chemical stability and structural rigidity. This compound is a fundamental building block in advanced polymer chemistry, serving as a critical monomer for synthesizing high-performance materials that outperform conventional petrochemical-based polymers.
    The core functionality of 2,6-NDA stems from its unique molecular structure—a rigid naphthalene ring functionalized with two carboxyl groups (-COOH) at the 2 and 6 positions. This symmetrical, linear structure imparts exceptional rigidity and thermal stability to the polymers derived from it. Its primary chemical reactivity lies in esterification, where it readily reacts with diols to form robust polyester chains. Unlike terephthalic acid (used for PET), the fused aromatic rings of 2,6-NDA confer superior mechanical strength, enhanced heat resistance, excellent gas barrier properties, and outstanding UV resistance to the resulting materials. These attributes make 2,6-NDA indispensable for manufacturing products that demand extreme durability and performance under harsh conditions.

    Application

    The most prominent application of 2,6-NDA is in the production of Polyethylene Naphthalate (PEN), a high-performance polyester. PEN, synthesized via the polycondensation of 2,6-NDA (or its dimethyl ester, NDC) with ethylene glycol, exhibits vastly superior properties compared to PET. It boasts a higher glass transition temperature (Tg), greater tensile strength, and significantly improved barrier capabilities against oxygen, carbon dioxide, and water vapor. Consequently, PEN is extensively used in high-end food packaging for extended shelf-life products, high-strength industrial fibers, tire cords, and specialized films for flexible printed circuits, magnetic recording tapes, and electrical insulation. It is also the material of choice for F-class electrical insulation, capable of withstanding continuous high-temperature operating environments.
    Beyond PEN, 2,6-NDA is a key monomer for producing other advanced polymers. It is used to synthesize Polybutylene Naphthalate (PBN), which offers excellent melt processability combined with high thermal stability, ideal for engineering plastic components. Furthermore, it is a critical component in manufacturing Liquid Crystal Polymers (LCPs), which exhibit exceptional flowability, dimensional stability, and flame resistance. LCPs are vital in the electronics industry for producing high-density connectors, sockets, and surface-mount devices. Additionally, 2,6-NDA serves as a versatile organic building block and ligand in the synthesis of Metal-Organic Frameworks (MOFs), where its rigid structure helps form porous, crystalline materials used in gas storage, separation, catalysis, and even as potential drug delivery carriers. It also finds utility as an intermediate in pharmaceuticals, dyestuffs, and various specialty fine chemicals.
    In summary, 2,6-Naphthalenedicarboxylic Acid is a cornerstone chemical for the advanced materials sector. Its unique ability to form ultra-stable, high-performance polymers has solidified its role as an indispensable raw material, driving innovation in packaging, electronics, automotive, aerospace, and industrial manufacturing industries.

    Details

    • High purity Propionyl chloride CAS79-03-8 (1)3lb
    • High purity Propionyl chloride CAS79-03-8 (2)3e7
    • High purity Propionyl chloride CAS79-03-8 (3)am6

    Frequently Asked Questions (FAQ)

    What is the CAS number and chemical formula of 2,6-NDA?
    The CAS number of 2,6-Naphthalenedicarboxylic Acid (2,6-NDA) is 1141-38-4, and its chemical formula is C₁₂H₈O₄.
    Why is 2,6-NDA preferred over terephthalic acid in high-performance materials?
    Unlike terephthalic acid, 2,6-NDA features fused aromatic rings that impart superior mechanical strength, higher thermal stability, exceptional gas barrier properties, and outstanding UV resistance to the resulting polymers.
    What are the primary applications of Polyethylene Naphthalate (PEN) derived from 2,6-NDA?
    PEN is widely used in high-end food packaging, high-strength industrial fibers, tire cords, specialized films for flexible printed circuits, magnetic recording tapes, and F-class electrical insulation.
    Can 2,6-NDA be used in applications other than PEN?
    Yes, it is used to synthesize Polybutylene Naphthalate (PBN), Liquid Crystal Polymers (LCPs), Metal-Organic Frameworks (MOFs), and acts as an intermediate in pharmaceuticals, dyestuffs, and specialty fine chemicals.
    How does 2,6-NDA benefit the synthesis of Metal-Organic Frameworks (MOFs)?
    The rigid, symmetrical structure of 2,6-NDA makes it an ideal ligand for creating stable, porous crystalline structures used in gas storage, chemical separation, catalysis, and drug delivery.