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[13C] - 和[14C] - 标记的酚类腐殖质和木质素单体的合成。

Synthesis of [13C]- and [14C]-labeled phenolic humus and lignin monomers.

作者信息

Ji Rong, Chen Zaixin, Corvini Philippe F-X, Kappler Andreas, Brune Andreas, Haider Konrad, Schäffer Andreas

机构信息

Biology V-Environmental Biology and Chemodynamics, RWTH Aachen, 52056 Aachen, Germany.

出版信息

Chemosphere. 2005 Sep;60(9):1169-81. doi: 10.1016/j.chemosphere.2005.02.014. Epub 2005 Apr 7.

Abstract

Natural phenolic monomers are ubiquitous in the environment and are involved in the stabilization of atmospheric carbon and the transformation of xenobiotics. Investigations on the stabilization of phenolic carbons and their environmental fate are hampered by the unavailability of commercial [13C]- and [14C]-labeled phenols. Here we report the complete chemical synthesis of the lignin and humus structural monomers p-coumaric, ferulic, and caffeic acids, p-hydroxybenzaldehyde, protocatechualdehyde, vanillin, catechol, and guaiacol, uniformly [13C]- or [14C]-labeled in the aromatic ring, starting from commercially available [U-ring-13C]- or [U-ring-14C]-labeled phenol. The synthesis of these compounds involved selective ortho-hydroxylation of the aromatic ring, Friedel-Crafts alkylation, and Knoevenagel condensation. [U-ring-13C]- or [U-ring-14C]-p-coumaric acid was synthesized via p-hydroxybenzaldehyde with a 75% yield with respect to phenol. Synthesis of [U-ring-13C]- or [U-ring-14C]-ferulic acid, consisting of six single steps via guaiacol and vanillin, had an overall yield of up to 45%. Uniformly ring-labeled caffeic acid was synthesized either via catechol and protocatechualdehyde in five single steps, yielding [U-ring-14C]-caffeic acid with a 37% yield, or via guaiacol, vanillin, and ferulic acid in seven steps, yielding [U-ring-13C]-caffeic acid with an 18% yield. Ferulic acid, [14C]-labeled at beta-C of the propenoic side chain, was synthesized from [2-14C]-malonic acid under Knoevenagel conditions with a 67% yield with respect to malonic acid. Demethylation of the [beta-14C]-ferulic acid with BBr3 in CH3CN resulted in [beta-14C]-caffeic acid with a 62% yield. All [U-ring-13C]-labeled phenolic products were analyzed by 13C nuclear magnetic resonance (13C-NMR) spectroscopy and gas chromatography-mass spectrometry (GC-MS).

摘要

天然酚类单体在环境中普遍存在,参与大气碳的稳定和外源性物质的转化。由于缺乏商业化的[13C] - 和[14C] - 标记酚类,对酚类碳的稳定性及其环境归宿的研究受到阻碍。在此,我们报告了木质素和腐殖质结构单体对香豆酸、阿魏酸、咖啡酸、对羟基苯甲醛、原儿茶醛、香草醛、儿茶酚和愈创木酚的全化学合成,这些单体在芳香环中均匀地用[13C] - 或[14C] - 标记,起始原料为市售的[U - 环 - 13C] - 或[U - 环 - 14C] - 标记酚。这些化合物的合成涉及芳香环的选择性邻位羟基化、傅克烷基化和克脑文盖尔缩合反应。[U - 环 - 13C] - 或[U - 环 - 14C] - 对香豆酸通过对羟基苯甲醛合成,相对于酚的产率为75%。[U - 环 - 13C] - 或[U - 环 - 14C] - 阿魏酸由愈创木酚和香草醛经六个单步反应合成,总产率高达45%。均匀环标记的咖啡酸可通过儿茶酚和原儿茶醛经五个单步反应合成,得到[U - 环 - 14C] - 咖啡酸,产率为37%;也可通过愈创木酚、香草醛和阿魏酸经七个步骤合成,得到[U - 环 - 13C] - 咖啡酸,产率为18%。在克脑文盖尔条件下,由[2 - 14C] - 丙二酸合成了在丙烯侧链的β - C处标记有[14C]的阿魏酸,相对于丙二酸的产率为67%。在乙腈中用BBr3使[β - 14C] - 阿魏酸脱甲基,得到产率为62%的[β - 14C] - 咖啡酸。所有[U - 环 - 13C] - 标记的酚类产物均通过13C核磁共振(13C - NMR)光谱和气相色谱 - 质谱(GC - MS)进行分析。

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