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Thermal cured epoxy resins using certain calixarenes and their esterified derivatives as curing agents
Authors:Shengang Xu  Hiroto Kudo  Tadatomi Nishikubo  Shinya Nakamura  Shunichi Numata
Institution:1. Department of Material and Life Chemistry, Faculty of Engineering, Kanagawa University, Rokkakubashi, Kanagawa‐ku, Yokohama 221‐8686, Japan;2. High Performance Material R&D Center, Hitachi Chemical Co., Ltd., Hitachi‐shi Ibaraki, 317‐8555, Japan
Abstract:The acetyl esterified calixarene (CA) derivatives were prepared from calix4]resorcinarene (CRA), and ptert‐butylcalixarene (BCAn], n = 4, 6, 8), respectively. Using these CA derivatives as curing agents, the thermal curing reactions of two multifunctional epoxy resins (jER 828, 186 g/equiv., and ESCN, 193.7 g/equiv.) were investigated. The temperatures of glass transition (Tg) and decomposition (Turn:x-wiley:0887624X:media:POLA23960:tex2gif-stack-1) were measured by DSC and TGA, respectively. Based on the yields, Tgs, and Tds of the thermal cured jER 828 epoxy resin with CRA‐E100, the curing conditions were optimized to be tetrabutylphosphonium bromide (TBPB) as catalyst in NMP at 160 °C for 15 h. Under this curing condition, the cured materials of jER 828 or ESCN using various CA derivatives as curing agents were prepared. Except for BCA4 derivatives, the yields of thermal curing reaction were higher than 90%. Tgs and Turn:x-wiley:0887624X:media:POLA23960:tex2gif-stack-2s of the resultant cured materials were in the range of 113–248 °C and 363–404 °C, respectively. These results mean that the cured epoxy resins with excellent Tgs were successfully formed by using CA derivatives as curing agents. It was also found that the Tgs of cured epoxy resins were strongly affected by the degree of esterification of CA derivatives. © 2010 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 48: 1931–1942, 2010
Keywords:calixarene  epoxy resin  glass transition  high performance polymers  thermal properties
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