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基于木质素启发酚类化合物的低分子量线型酚醛环氧树脂的合成与表征

Synthesis and Characterization of a Low-Molecular-Weight Novolac Epoxy Derived from Lignin-Inspired Phenolics.

作者信息

Hambleton Kelli M, Stanzione Joseph F

机构信息

Department of Chemical Engineering, Rowan University, 201 Mullica Hill Road, Glassboro, New Jersey 08028, United States.

出版信息

ACS Omega. 2021 Sep 3;6(37):23855-23861. doi: 10.1021/acsomega.1c02799. eCollection 2021 Sep 21.

Abstract

The need for renewable polymers capable of replacing their petrochemical counterparts continues to grow as sustainability concerns rise. Bisguaiacol (BG), a bioinspired alternative to bisphenol-A (BPA), has been synthesized using vanillyl alcohol and guaiacol via an electrophilic aromatic condensation. Purification provides both BG and an oligomeric coproduct with a consistent number average molecular weight and dispersity of ∼650 Da and ∼1.00, respectively. This coproduct has been well characterized as a low-molecular-weight novolac averaging five hydroxyls per molecule and was transformed into an epoxy resin suitable for use in thermosetting resins. The bioinspired thermoset produced in this work, consisting of the epoxidized coproduct and an amine curing agent (Epikure W), exhibited a glass transition temperature over 100 °C and glassy storage modulus value of ∼3 GPa at 25 °C. When compared to a commercial cresol novolac epoxy, the cured epoxidized coproduct resin shows comparable thermal and thermomechanical properties. When compared to a commercial BPA-based resin, the cured epoxidized coproduct resin shows improved mode 1 fracture values of 1.34 J m ( ) and 448.16 J/m ( ). By utilizing the coproduct strategically, the overall production of BG has the potential to become more economically feasible.

摘要

随着对可持续性的关注不断增加,对能够替代石化聚合物的可再生聚合物的需求持续增长。双愈创木酚(BG)是双酚A(BPA)的一种受生物启发的替代品,它是通过香草醇和愈创木酚经亲电芳香缩合反应合成的。纯化后得到了BG和一种低聚物副产物,其数均分子量和分散度分别约为650 Da和1.00。这种副产物已被充分表征为一种低分子量酚醛清漆,平均每个分子有五个羟基,并被转化为一种适用于热固性树脂的环氧树脂。在这项工作中制备的受生物启发的热固性材料,由环氧化副产物和一种胺类固化剂(Epikure W)组成,其玻璃化转变温度超过100 °C,在25 °C时玻璃态储能模量值约为3 GPa。与市售的甲酚酚醛清漆环氧树脂相比,固化后的环氧化副产物树脂表现出相当的热性能和热机械性能。与市售的基于双酚A的树脂相比,固化后的环氧化副产物树脂的I型断裂值有所提高,分别为1.34 J/m²和448.16 J/m²。通过战略性地利用该副产物,BG的整体生产有可能在经济上变得更可行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b17/8459366/3dab43f39ae6/ao1c02799_0004.jpg

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