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Bio-based monomers for UV-curable coatings: allylation of ferulic acid and investigation of photocured thiol-ene network

机译:用于紫外线固化涂料的生物基单体:阿魏酸的烯丙基化和光固化硫醇-NEE网络的研究

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Y Ferulic acid (FA) is an unsaturated hydroxycinnamic acid that can be isolated from lignin. In this study, the biorenewable FA was allylated to result in a library of monoor diallylated monomers, either having the inherent cinnamoyl double bond intact or saturated through hydrogenolysis. All monomers were photo-chemically cured with trimethylolpropane tris(3-mercaptopropionate) (TRIS) into crosslinked films in the presence of a photo initiator (Irgacue 819). The reactivity of the FA-derived monomers toward TRIS was investigated in detail by photorheology and FT-IR spectroscopy to reveal details on the relative reaction rates for the different alkene groups. The thermo-mechanical properties of the crosslinked films were fully characterized by means of dynamic mechanical analysis (DMTA) and thermal calorimetry (DSC). It was demonstrated that the glass transition temperature of the final crosslinked network could be controlled by the addition of a monoallylated monomer. By increasing the content of the monoallylated compound, it was possible to observe a linear decrease of the Tgvalues of the crosslinked films.
机译:阿魏酸(FA)是一种不饱和的羟基肉桂酸,可以从木质素中分离出来。在这项研究中,可生物再生的FA被烯丙基化,形成一个单体或二烯丙基化单体库,要么具有完整的固有肉桂酰双键,要么通过氢解饱和。所有单体在光引发剂(Irgacue 819)存在下,用三羟甲基丙烷三(3-巯基丙酸酯)(tris)进行光化学固化,形成交联膜。通过光流变学和FT-IR光谱详细研究了FA衍生单体对TRIS的反应性,以揭示不同烯烃基团的相对反应速率的细节。通过动态力学分析(DMTA)和热量热法(DSC)对交联膜的热机械性能进行了全面表征。结果表明,最终交联网络的玻璃化转变温度可以通过添加单烯丙基化单体来控制。通过增加单烯丙基化合物的含量,可以观察到交联膜的TG值线性降低。

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