川芎嗪
化学
催化作用
丙酮
激进的
脱氢
组合化学
产量(工程)
三元络合物
猝灭(荧光)
三元运算
氧化还原
金丝桃苷
光化学
羟基自由基
除氧
活性氧
亚胺
印丹
密度泛函理论
抗氧化剂
催化循环
有机化学
作者
Zhizhi Yang,Changrong Wang,Qunna Yang,Yingtong Tang,Rui Hai Liu,Jicheng Chen
标识
DOI:10.1021/acssuschemeng.6c07386
摘要
Abstract Efficient synthesis of tetramethylpyrazine (TMP) under mild conditions remains a challenge in green catalytic engineering. Herein, a ternary synergistic catalytic system is constructed to achieve highly efficient TMP production. The system achieves sustained generation of hydroxyl radicals (·OH) via epigallocatechin gallate (EGCG)-mediated Fe(III)/Fe(II) redox cycling and the weakly acidic condition provided by slightly acidic electrolyzed water (SAEW). Notably, tert-butanol (TBA) quenching inhibited TMP production by 85.49% at 10 min, confirming ·OH as the dominant reactive species initially. Density functional theory (DFT) calculations show that ·OH-driven acetoin oxidation proceeds with an exceptionally low activation barrier, predominantly yielding 2,3-butanedione via hydrogen abstraction. Multispectroscopic analyses suggested that ·OH-mediated radical pathways involved not only acetoin oxidation but potentially also the key dehydrogenation step during TMP formation from dihydropyrazine. In summary, the ternary system not only achieved a TMP yield of 16.97 g/L (240 min) but also improved the crystal morphology. This work establishes a radical-regulated oxidation–condensation coupling mechanism, which provides a green and efficient catalytic strategy for the synthesis of high-value N-heterocycles under mild conditions and shows considerable potential for scalable chemical manufacturing.
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