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Hydrogenation of high molecular weight bisphenol a type epoxy resin Be503 in a functional and greener solvent mixture using a Rh catalyst supported on carbon black
期刊文章

Hydrogenation of high molecular weight bisphenol a type epoxy resin Be503 in a functional and greener solvent mixture using a Rh catalyst supported on carbon black

B.-X. Lai, S. Bhattacharjee, Y.-H. Huang, A.-B. Duh, P.-C. Wang 和 C.-S. Tan
Polymers, 卷.12(11), 頁碼.1-14
2020
Web of Science ID: WOS:000593885300001

摘要

BPA type epoxy resin Epoxy ring opening Hydrogenation Rh catalyst VulcanXC72 Water as solvent Activation energy Aromatization Carbon black Catalysts Epoxy resins Mixtures Molecular weight Phenols Rhodium compounds Aromatic rings Electron-deficient Greener solvents High molecular weight High solubility Isopropyl alcohols Microwave assisted Polyol methods Hydrogenation
A functional greener solvent mixture containing water, isopropyl alcohol (IPA) and ethyl acetate with the ratio 10:20:70 (wt%) was found to accelerate hydrogenation of bisphenol A type epoxy resin BE503 with a molecular weight of 1500 through an on-water mechanism, and led to an increased H2 availability, due to high solubility of H2 in IPA. Different carbon-based supports were tested and VulcanXC72 was found as the best support among the tested carbon-based ones as it possessed the highest amount of electron deficient promoter, RhOx . The catalyst, Rh5/VulcanXC72-polyol, synthesized by the microwave assisted polyol method, yielded a 100% hydrogenation of aromatic rings with an epoxy ring opening below 20.0% at 50◦C and a H2 pressure of 1000 psi in 2.25 h. Intrinsic activation energies for the hydrogenation of aromatic rings and epoxy ring opening were experimentally estimated and a mechanism for the hydrogenation of BE503 was proposed, wherein the hydrogenation of aromatic rings and epoxy ring opening in BE503 proceeded simultaneously in parallel and in-series with parallel being the major pathway. © 2020 by the authors. Licensee MDPI, Basel, Switzerland.

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https://www.scopus.com/inward/record.uri?eid=2-s2.0-85094562704&doi=10.3390%2fpolym12112513&partnerID=40&md5=c74f38601f0c943580daa6bda0f1f908檢視
url
https://doi.org/10.3390/polym12112513檢視
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