Product Name :
1,3-Butanediol diacrylate (CAS 19485-03-1)

Synonym :

Application :

CAS:
19485-03-1

Purity:

Molecular Weight:
198.22

Formula :
C10H14O4

Physical state:
Liquid

solubility :

Shipping Condition :
Store at room temperature

Melting point:

SMILES:
CC(CCOC(=O)C=C)OC(=O)C=C

References:
:Leachability of plasticizer and residual monomer from commercial temporary restorative resins. | Kawahara, T., et al. 2004. J Dent. 32: 277-83. PMID: 15053910Development and in situ synthesis of monolithic stationary phases for electrochromatographic separations. | Delaunay-Bertoncini, N., et al. 2004. Electrophoresis. 25: 3204-15. PMID: 15472962Development of acrylate-based monolithic stationary phases for electrochromatographic separations. | Barrioulet, MP., et al. 2005. Electrophoresis. 26: 4104-15. PMID: 16252336Anisotropic crystal growth in aerosil/polymethylmethacrylate systems dispersed in dimethacrylate monomers. | Pefferkorn, A., et al. 2007. J Colloid Interface Sci. 311: 45-51. PMID: 17382955CEC separation of peptides using a poly(hexyl acrylate-co-1,4-butanediol diacrylate-co-[2-(acryloyloxy)ethyl]trimethyl ammonium chloride) monolithic column. | Augustin, V., et al. 2008. Electrophoresis.1107608-80-9 Formula 29: 3875-86. PMID: 18850656Acrylate ester-based monolithic columns for capillary electrochromatography separation of triacylglycerols in vegetable oils. | Lerma-García, MJ., et al. 2011. J Chromatogr A. 1218: 7528-33. PMID: 21737085Highly crosslinked polymeric monoliths for reversed-phase capillary liquid chromatography of small molecules. | Liu, K., et al. 2012. J Chromatogr A. 1227: 96-104. PMID: 22265778A study of the methylene/perfluormethylene selectivity of porous polymer monolithic stationary phases exhibiting different fluorous/hydrophobic content. | Xu, Z. and Oleschuk, RD. 2014. J Chromatogr A. 1329: 61-70. PMID: 24461637Thermal, Mechanical and Biocompatibility Analyses of Photochemically Polymerized PEGDA250 for Photopolymerization-Based Manufacturing Processes. | Rekowska, N., et al. 2022. Pharmaceutics. 14: PMID: 35336002Poly(N-ethylmethacrylamide) thermally-sensitive microgel latexes: effect of the nature of the crosslinker on the polymerization kinetics and physicochemical properties | Pascale Hazot a b, Thierry Delair a, Christian Pichot a, Jean-Paul Chapel b, Abdelhamid Elaissari a.102691-36-1 Description 2003.PMID:33683182 Comptes Rendus Chimie. 6: 1417-1424.Conductivity study of diacrylate-based gels: Part III. Influence of the nature of the constituents and improvement of a theoretical model of ionic transport | M Caillon-Caravanier, B Claude-Montigny, D Lemordant, G Bosser. 2003. Solid State Ionics. 156: 113-127.Scientific Opinion on the safety evaluation of the substance, (butadiene, styrene, methyl methacrylate, butyl acrylate) copolymer cross-linked with divinylbenzene or 1,3-butanediol dimethacrylate for use in food contact materials | EFSA Panel on food contact materials, enzymes, flavourings and processing aids (CEF). 2011. EFSA Journal. 9.PolyHIPE/pullulan composites derived from glycidyl methacrylate and 1,3-butanediol dimethacrylate-based high internal phase emulsions | Funda Çira,Emine Hilal Mert. 2015. Polymer Engineering & Science. 55: 2636-2642.Influence of titania on the morphological and mechanical properties of 1,3-butanediol dimethacrylate based polyHIPE composites | Elif Yüce a, Fatma Nur Parın b, Peter Krajnc c, H. Hande Mert d, E. Hilal Mert a. 2018. Reactive and Functional Polymers. 130: 8-15.Hydrophilic closed-cell macroporous foam preparation by emulsion templating | Fatma Nur Parın a, E. Hilal Mert b. 2020. Materials Letters. 277.