31480-93-0Relevant articles and documents
POLYMERIZABLE CINNAMATE ESTER DERIVATIVE MANUFACTURING METHOD
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, (2020/08/15)
PROBLEM TO BE SOLVED: To provide a method of manufacturing a polymerizable cinnamate ester derivative that can be added to a liquid crystal composition in producing a TFT liquid crystal display element so as to reduce burning in the display element; a method of manufacturing a polymerizable composition containing the polymerizable cinnamate ester derivative; and a method of manufacturing a liquid crystal display element by polymerizing the polymerizable composition. SOLUTION: A method of manufacturing a compound represented by the specified general formula (III) includes reacting a compound represented by the specified general formula (I) with a compound represented by the specified general formula (II). SELECTED DRAWING: None COPYRIGHT: (C)2020,JPOandINPIT
Method for producing aromatic diol mono(meth)acrylate
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Paragraph 0076, (2016/10/07)
The present invention refers to, colored, insoluble solvent and the minute to do , high purity aromatic diol mono (metadata) acrylate to obtain a is method, economical manufacturing method provides advantageous in. In order to obtain the above-the, the present invention refers to, aromatic diol and (metadata) acrylic acid, an esterification reaction in the presence of strong acid to the aromatic diol mono (metadata) acrylate is method for producing, said method is the presence of an aprotic organic solvent or solventless 100 to 140 °C in carried out, heating using the moisture in the blended mix reaction system while removing the low by reducing the pressure in a including esterification reaction step of reacting a carboxylic acid component, aromatic diol mono (metadata) acrylate provides method for producing.
Method for producing hydroxyphenyl acrylate monomers and polymers
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Page/Page column 6, (2008/12/08)
New syntheses of phenolic acrylate monomers are provided as well as polymers comprising such phenolic acrylate monomers. Preferred polymers of the invention are useful as a resin component of chemically-amplified positive-acting resists.