A phosphorus-containing compound represented by formula (I) and a preparation method thereof are provided. An addition reaction is performed for an organic cyclic phosphorus compound with an aryl aldehyde compound, and then a condensation reaction is performed with an aryl compound having active hydrogen in the use of an organic acid as a catalyst to obtain the proposed phosphorus-containing compound. This phosphorus-containing compound can be used as a hardener for resin, and improves flame retardant properties and thermal resistance for a flame retardant epoxy resin composition, thereby suitably applied to resin compositions used for manufacturing printed circuit boards and laminated circuit boards in electronic or electric products.
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Disclosed is a flame retarding resin composition comprising (A) one or more epoxy resins; (B) a hardener; and (C) a hardening accelerator, wherein the hardener of the component B is a phosphorus-containing compound represented by the following formula (I):
1
wherein each symbol is as defined below. The flame retarding resin composition of the present invention without adding halogen or other flame retardants has high flame retardancy and excellent heat resistance. The flame retarding resin composition of the present invention is suitably useful in the application of thermosetting resins, thermoplastic resins, bonding sheets, composite materials, laminated plates, printed circuit boards, copper foil adhesives, inks used for build-up process, semiconductor molding materials and the like.
本发明公开了一种阻燃树脂组合物,该组合物包含(A)一种或多种环氧树脂;(B)一种固化剂;以及(C)一种硬化促进剂,其中成分 B 的固化剂是由下式(I)表示的含磷化合物:
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其中各符号定义如下。本发明的阻燃树脂组合物不添加卤素或其他阻燃剂,具有高阻燃性和优异的耐热性。本发明的阻燃树脂组合物适用于热固性树脂、热塑性树脂、粘合片、复合材料、层压板、印刷电路板、铜箔粘合剂、用于堆积工艺的油墨、半导体成型材料等。
US6984716B2
申请人:——
公开号:US6984716B2
公开(公告)日:2006-01-10
FeCl<sub>3</sub>-mediated Direct Chalcogenation of Phenols
Direct sulfenylation and selenylation of phenols using a stoichiometric amount of FeCl3 under an oxygen atmosphere has been developed. The chalcogenated phenols were shown to be suitable for preparing S- and Se-containing compounds using the reaction of the remaining hydroxy group.