Cas no 123633-53-4 (ZIRCONIUM CARBOXYETHYL ACRYLATE 60% IN)

Zirconium Carboxyethyl Acrylate 60% in is a specialized organometallic compound designed for applications requiring enhanced adhesion, crosslinking, and durability. Its zirconium-based structure provides excellent thermal stability and chemical resistance, making it suitable for high-performance coatings, adhesives, and composite materials. The carboxyethyl acrylate functional group enables efficient polymerization and bonding with various substrates, including metals, ceramics, and polymers. This product is supplied as a 60% solution, ensuring ease of handling and compatibility with industrial formulations. Its unique combination of reactivity and stability makes it a valuable component in advanced material science, particularly where robust mechanical properties and environmental resistance are critical.
ZIRCONIUM CARBOXYETHYL ACRYLATE 60% IN structure
123633-53-4 structure
Product Name:ZIRCONIUM CARBOXYETHYL ACRYLATE 60% IN
CAS No:123633-53-4
MF:C24H32O16Zr
MW:667.725288391113
CID:896381
PubChem ID:329761032
Update Time:2025-06-12

ZIRCONIUM CARBOXYETHYL ACRYLATE 60% IN Chemical and Physical Properties

Names and Identifiers

    • 3-prop-2-enoyloxypropanoic acid,zirconium
    • ZIRCONIUM(II) HYDRIDE 325MESH
    • Zirconium carboxyethyl acrylate
    • Zirconium carboxyethyl acrylate
    • ZIRCONIUM CARBOXYETHYL ACRYLATE 60% IN &
    • Zirconium carboxyethyl acrylate 60% (n-propanol)
    • 123633-53-4
    • 3-prop-2-enoyloxypropanoic acid;zirconium
    • Zirconium carboxyethyl acrylate, 60% (n-propanol)
    • ZIRCONIUM CARBOXYETHYL ACRYLATE 60per cent IN
    • ZIRCONIUM CARBOXYETHYL ACRYLATE 60% IN
    • MDL: MFCD10566999
    • Inchi: 1S/4C6H8O4.Zr/c4*1-2-6(9)10-4-3-5(7)8;/h4*2H,1,3-4H2,(H,7,8);
    • InChI Key: VXCWFNCPUBWGJG-UHFFFAOYSA-N
    • SMILES: [Zr].OC(CCOC(C=C)=O)=O.OC(CCOC(C=C)=O)=O.OC(CCOC(C=C)=O)=O.OC(CCOC(C=C)=O)=O

Computed Properties

  • Exact Mass: 662.04200
  • Monoisotopic Mass: 666.073734g/mol
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 4
  • Hydrogen Bond Acceptor Count: 16
  • Heavy Atom Count: 41
  • Rotatable Bond Count: 20
  • Complexity: 750
  • Covalently-Bonded Unit Count: 5
  • Defined Atom Stereocenter Count: 0
  • Undefined Atom Stereocenter Count : 0
  • Defined Bond Stereocenter Count: 0
  • Undefined Bond Stereocenter Count: 0
  • Topological Polar Surface Area: 254?2

Experimental Properties

  • Density: 1.101?g/mL?at 25?°C
  • Boiling Point: 100-121?°C
  • Flash Point: Fahrenheit: 59 ° f < br / > Celsius: 15 ° C < br / >
  • PSA: 210.40000
  • LogP: 0.45280
  • Color/Form: 60% (n-propanol)

ZIRCONIUM CARBOXYETHYL ACRYLATE 60% IN Security Information

ZIRCONIUM CARBOXYETHYL ACRYLATE 60% IN Pricemore >>

Related Categories No. Product Name Cas No. Purity Specification Price update time Inquiry
XI GE MA AO DE LI QI ( SHANG HAI ) MAO YI Co., Ltd.
686247-100G
ZIRCONIUM CARBOXYETHYL ACRYLATE 60% IN
123633-53-4
100g
¥5113.33 2023-11-29
SHENG KE LU SI SHENG WU JI SHU
sc-253853-100g
Zirconium carboxyethyl acrylate,
123633-53-4
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¥2820.00 2023-09-05
SHENG KE LU SI SHENG WU JI SHU
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Zirconium carboxyethyl acrylate,
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¥2,820.00 2023-07-10

Additional information on ZIRCONIUM CARBOXYETHYL ACRYLATE 60% IN

Comprehensive Guide to ZIRCONIUM CARBOXYETHYL ACRYLATE 60% IN (CAS No. 123633-53-4): Properties, Applications, and Industry Insights

ZIRCONIUM CARBOXYETHYL ACRYLATE 60% IN (CAS No. 123633-53-4) is a specialized chemical compound widely recognized for its unique molecular structure and versatile applications in industries such as coatings, adhesives, and advanced materials. This zirconium-based acrylate derivative combines the stability of zirconium with the reactivity of carboxyl and acrylate functional groups, making it a valuable ingredient in formulations requiring durability, adhesion, and cross-linking properties.

In recent years, the demand for high-performance additives like ZIRCONIUM CARBOXYETHYL ACRYLATE has surged, driven by trends in sustainable manufacturing and eco-friendly material development. Researchers and engineers frequently search for "zirconium acrylate uses" or "CAS 123633-53-4 applications" to explore its role in UV-curable coatings, dental composites, and even flexible electronics. Its compatibility with water-based systems also aligns with the global shift toward reducing volatile organic compounds (VOCs).

The chemical's 60% concentration formulation offers a balance between reactivity and handling safety, making it suitable for industrial-scale production. Key properties include excellent thermal stability, enhanced adhesion to substrates like metals and polymers, and resistance to environmental degradation. These characteristics address common user queries such as "how to improve coating adhesion" or "best crosslinkers for acrylic resins."

From an SEO perspective, terms like "ZIRCONIUM CARBOXYETHYL ACRYLATE supplier" and "technical data sheet CAS 123633-53-4" rank highly in search engines, reflecting commercial and research interests. The compound’s role in "green chemistry initiatives" further amplifies its relevance, as industries seek alternatives to traditional heavy-metal additives. Regulatory compliance, such as REACH and FDA approvals for indirect food contact, is another critical topic tied to this material.

Innovations in nanotechnology have expanded the applications of ZIRCONIUM CARBOXYETHYL ACRYLATE 60% IN, particularly in hybrid organic-inorganic coatings. Users often inquire about "nano-coating formulations" or "zirconium acrylate nanoparticles," highlighting its potential in anti-corrosive and scratch-resistant finishes. The compound’s ability to form dense networks upon curing makes it ideal for high-gloss automotive paints and industrial sealants.

In summary, ZIRCONIUM CARBOXYETHYL ACRYLATE (CAS No. 123633-53-4) stands at the intersection of performance and sustainability. Its adaptability to emerging technologies—such as 3D printing resins and biodegradable materials—ensures its continued prominence in material science. For manufacturers and researchers, understanding its "optimal curing conditions" or "compatibility with other monomers" remains pivotal to unlocking its full potential.

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