Acrylic monomers
Acrylic monomers are the reactive building blocks behind acrylate and methacrylate polymers used in coatings, adhesives, dental materials, and specialty fluoropolymers. Reference standards support polymer chemistry research, coatings and adhesive formulation, and quality control testing, with fluorinated variants also relevant to environmental monitoring. Sourcing from a dedicated supplier means each monomer arrives with verified identity, documented purity, and a certificate of analysis, including relevant stabilizer content, across both common and specialty variants. Several monomers in this class are also used in dental bonding agents.
Showing all 12 results
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(+/-)-trans Taxifolin
CAS Number: 24198-97-8
Molecular Formula: C15 H12 O7
Catalogue Number: RCLS2L180587
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(Perfluorooctyl)ethyl Acrylate
CAS Number: 27905-45-9
Molecular Formula: C13 H7 F17 O2
Catalogue Number: RCLS2L172897
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[1S-(1Alpha,3aBeta,4Beta,7aAlpha)]-4-[2-(2,5-Dihydroxyphenyl)ethyl]octahydro-1-hydroxy-7a-methyl-5H-inden-5-one
CAS Number: 57780-81-1
Molecular Formula: C18H24O4
Catalogue Number: RCLS2L135036
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1,1-Dichloroethene (stabilized with MEHQ)
CAS Number: 75-35-4
Molecular Formula: C2 H2 Cl2
Catalogue Number: RCLS2L131897
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10-Methacryloyldecylphosphate
CAS Number: 85590-00-7
Molecular Formula: C14 H27 O6 P
Catalogue Number: RCLS2L159179
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1H,1H,2H,2H-Perfluorooctyl Acrylate
CAS Number: 17527-29-6
Molecular Formula: C11 H7 F13 O2
Catalogue Number: RCLS2L173754
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2-(((2-Propylhept-6-en-1-yl)oxy)carbonyl)benzoic Acid
CAS Number: N/A
Molecular Formula: C18H24O4
Catalogue Number: RCLS2L175967
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2-(Perfluorodecyl)ethyl Acrylate
CAS Number: 17741-60-5
Molecular Formula: C15 H7 F21 O2
Catalogue Number: RCLS2L172896
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3-Methyl-1,5-pentanediol Diacrylate (~0.5% 4-Hydroxy Anisole as a stabilizer)
CAS Number: 64194-22-5
Molecular Formula: C12H18O4
Catalogue Number: RCLS2L167209
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Methacrylonitrile (stabilized with hydroquinone monomethyl ether)
CAS Number: 126-98-7
Molecular Formula: C4 H5 N
Catalogue Number: RCLS2L159803
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Perfluorooctylethyl Methacrylate
CAS Number: 1996-88-9
Molecular Formula: C14 H9 F17 O2
Catalogue Number: RCLS2L173758
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Tridecafluorohexylethyl Methacrylate
CAS Number: 2144-53-8
Molecular Formula: C12 H9 F13 O2
Catalogue Number: RCLS2L184240
Certified Reference Standards for Acrylate and Methacrylate Monomers
Reliable acrylic monomer standards are essential wherever polymer formulation, coatings development, or quality control testing is underway. Impurities or unverified stabilizer content in a monomer can affect polymerization behavior and throw off an entire batch, making certified reference material a practical necessity rather than a formality.
Clinivex supplies a wide range of acrylic monomer standards, including specialty fluorinated and stabilized variants, each backed by a certificate of analysis. Our technical team can help source less common monomers through our global supplier network when your formulation calls for something outside our standard listing.
As an ISO 9001:2015 and GMP certified supplier working with chemical manufacturers, materials researchers, and analytical laboratories across the USA and Canada, we focus on accurate documentation and dependable delivery for every order. We also keep both common and specialty fluorinated variants in stock, which helps formulators avoid long lead times when a project shifts from early testing into full-scale production.
Polymer coatings and adhesives formulated from these monomers are part of a broader body of work in chemical and industrial manufacturing, where quality control depends on confirming raw material purity before production. Fluorinated acrylate variants are also relevant to environmental and food safety testing, where the presence of fluorinated compounds is increasingly monitored. Contact our team to request a quote or check availability for a specific acrylic monomer standard.
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Frequently Asked Questions
They are the reactive building blocks used to produce acrylate and methacrylate polymers found in coatings, adhesives, dental materials, and specialty fluoropolymers.
Many acrylate monomers polymerize readily on their own, so a small amount of stabilizer, such as MEHQ, is added to prevent premature polymerization during storage and handling.
A methacrylate has an extra methyl group compared to an acrylate, which affects the resulting polymer’s hardness, flexibility, and resistance to degradation.
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