Basic information Safety Supplier Related

3-(ACRYLOYLOXY)-2-HYDROXYPROPYL METHACRYLATE

Basic information Safety Supplier Related

3-(ACRYLOYLOXY)-2-HYDROXYPROPYL METHACRYLATE Basic information

Product Name:
3-(ACRYLOYLOXY)-2-HYDROXYPROPYL METHACRYLATE
Synonyms:
  • 1-(ACRYLOYLOXY)-3-(METHACRYLOYLOXY)-2-PROPANOL
  • 3-(ACRYLOYLOXY)-2-HYDROXYPROPYL METHACRYLATE
  • 2-Propenoicacid,2-hydroxy-1,3-propanediylester
  • 2-Propenoic acid, 2-methyl-, 2-hydroxy-3-(1-oxo-2-propenyl)oxypropyl ester
  • 1-Acryloyloxy-2-hydroxy-3-methacryoyloxypropane
  • 2-HYDROXY-3-ACRYLOXY PROPYL METHACRYLATE
  • 2-HYDROXY-3-ACRYLOYLOXY PROPYL METHACRYLATE
  • 1-(Acryloyloxy)-3-(methacryloyloxy)-2-propanol (stabilized with MEHQ)
CAS:
1709-71-3
MF:
C10H14O5
MW:
214.22
Product Categories:
  • Diacrylates & Dimethacrylates
  • Functional Materials
  • Reagent for High-Performance Polymer Research
  • Acrylic Monomers
  • Monomers
  • Polyfunctional Acrylics
Mol File:
1709-71-3.mol
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3-(ACRYLOYLOXY)-2-HYDROXYPROPYL METHACRYLATE Chemical Properties

Boiling point:
130-155 °C(Press: 0.18-0.5 Torr)
Density 
1.14 g/mL at 25 °C (lit.)
refractive index 
n20/D 1.473(lit.)
Flash point:
>230 °F
storage temp. 
2-8°C
Water Solubility 
Insoluble in water
form 
clear liquid
pka
12.51±0.20(Predicted)
color 
Colorless to Almost colorless
InChI
1S/C10H14O5/c1-4-9(12)14-5-8(11)6-15-10(13)7(2)3/h4,8,11H,1-2,5-6H2,3H3
InChIKey
ZODNDDPVCIAZIQ-UHFFFAOYSA-N
SMILES
CC(=C)C(=O)OCC(O)COC(=O)C=C
CAS DataBase Reference
1709-71-3
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Safety Information

Hazard Codes 
Xi
Risk Statements 
38-41-43
Safety Statements 
26-36
RIDADR 
UN1760
WGK Germany 
3
HazardClass 
8
HS Code 
29161400
Storage Class
10 - Combustible liquids
Hazard Classifications
Eye Dam. 1
Skin Irrit. 2
Skin Sens. 1

MSDS

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3-(ACRYLOYLOXY)-2-HYDROXYPROPYL METHACRYLATE Usage And Synthesis

Uses

  • Spectroscopic Analysis on Michael Addition Reaction of Secondary Amino Groups on Silica Surface with 3-(Acryloyloxy)-2-hydroxypropyl Methacrylate: This study discusses the introduction of polymerizable methacrylate groups to silica surfaces via Michael addition of AHM, observing increased functional group introduction with increased molar ratios (S Lee, KR Ha, 2014).
  • Synthesis of well-defined diblock copolymer nano-objects by RAFT non-aqueous emulsion polymerization: The paper elaborates on the synthesis of well-defined polymeric nano-objects employing RAFT polymerization in non-aqueous media, highlighting the versatility of methacrylate copolymers in creating tailored nanostructures (RR Gibson, A Fernyhough, OM Musa, SP Armes, 2021).
  • Spectroscopic analysis of methacrylate groups introduced on silica particle surfaces by the aza-Michael addition reaction: This publication explores the functionalization of silica particles with methacrylate groups using AHM, focusing on the efficiency of grafting via spectroscopic analysis (S Lee, KR Ha, 2016).
  • Antimicrobial and Responsive Zwitterionic Polymer Based on Cysteine Methacrylate Synthesized via RAFT Polymerization: Discusses the synthesis of a responsive, antimicrobial zwitterionic polymer from cysteine and AHM, using thiol-Michael reaction for antimicrobial applications (P Yadav, S Hafeez, J Jaishankar, P Srivastava, 2021).

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