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首页> 外文期刊>RSC Advances >Effect of substituents and promoters on the Diels–Alder cycloaddition reaction in the biorenewable synthesis of trimellitic acid
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Effect of substituents and promoters on the Diels–Alder cycloaddition reaction in the biorenewable synthesis of trimellitic acid

机译:取代基和启动子对偏苯二甲酸生物愈性合成Diels-Alder环加成反应的影响

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摘要

An efficient route to produce oxanorbornene, a precursor for the production of bio-based trimellitic acid (TMLA) via the Diels–Alder (DA) reaction of biomass-derived dienes and dienophiles has been proposed by utilizing density functional theory (DFT) simulations. It has been suggested that DA reaction of dienes such as 5-hydroxymethyl furfural (HMF), 2,5-dimethylfuran (DMF), furan dicarboxylic acid (FDCA) and biomass-derived dienophiles (ethylene derivatives e.g. , acrolein, acrylic acid, etc. ) leads to the formation of an intermediate product oxanorbornene, a precursor for the production of TMLA. The activation barriers for the DA reaction were correlated to the type of substituent present on the dienes and dienophiles. Among the dienophiles, acrolein was found to be the best candidate showing a low activation energy (<40 kJ mol ~(?1) ) for the cycloaddition reaction with dienes DMF, HMF and hydroxy methyl furoic acid (HMFA). The FMO gap and (IP _(diene) + EA _(dienophile) )/2 were both suggested to be suitable descriptors for the DA reaction of electron-rich diene and electron-deficient dienophile. Further solvents did not have a significant effect on the activation barrier for DA reaction. In contrast, the presence of a Lewis acid was seen to lower the activation barrier due to the reduction in the FMO gap.
机译:通过利用密度泛函理论(DFT)模拟,已经提出了通过DIECS-衍生的二烯和辅酶能量的产生生物基偏苯二甲酸(TMLA)的生物基偏苯二酸(TMLA)的高效途径。已经表明,二烯如5-羟甲基糠醛(HMF),2,5-二甲基呋喃(DMF),呋喃二羧酸(FDCA)和生物质衍生的促进剂(乙烯衍生物,丙烯酸,丙烯酸等)的DA反应(丙烯醛,丙烯酸等) 。)导致形成中间产物Oxanorbornene,一种用于生产TMLA的前体。 DA反应的活化屏障与在二烯和二烯水上存在的取代基的类型相关。在解毒剂中,发现丙烯醛是具有与二烯DMF,HMF和羟基甲基糠醛(HMFA)的环加成反应的低活化能量(<40kJ mol〜(α1))的最佳候选者。 FMO间隙和(IP _(二烯)+ EA _(DieOophile))/ 2均建议是用于电子富含电子二烯和电子缺陷的辅酶团的DA反应的合适描述符。进一步的溶剂对DA反应的活化屏障没有显着影响。相反,由于FMO间隙的降低,观察到Lewis酸的存在以降低活化屏障。

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