高氘化松柏醇的合成,用于在脱氢聚合物中沉默核磁共振信号

IF 2.2 3区 农林科学 Q2 FORESTRY
Shigetomi, Kengo, Tokizawa, Mana, Uraki, Yasumitsu
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引用次数: 0

摘要

为了建立一种简单的方法来阐明木质素链生长机制,我们尝试在脱氢聚合物(DHP)中制备不显示核磁共振信号的单木质素。以原儿茶醛和丙二酸为原料,经改良的Knoevenagel-Doebner反应和Luche还原,成功地合成了松木醇d7。该工艺在目标位置(即甲氧基:> 99%D, α: > 99%D, β: 92%D和γ: 98%D)获得了高至优异的氘化效率。以针叶树醇-d7为原料制备了DHP,并对其核磁共振波谱进行了比较。结果表明:(1)即使在DHP中,甲氧基、α-和β-位置的氘原子也被高度保留,其信号被有效抑制;(2)反应中γ-位置部分氘被H取代;(3)同时,γ-CH2的生成可以忽略不计。这项研究表明,针叶树醇-d7可以“沉默”大多数信号,即使转化为DHP。高度氘化的单脂醇是一种独特的分子工具,可以将感兴趣的信号与单脂醇衍生的信号区分开来。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Synthesis of highly deuterated coniferyl alcohol for silencing of NMR signals in the resulting dehydrogenative polymer
To establish a facile methodology for the elucidation of the lignin chain-growth mechanism, the preparation of monolignol that does not show NMR signals in the dehydrogenative polymer (DHP) was attempted. As a monolignol of which aliphatic moieties were deuterated, coniferyl alcohol-d7 was successfully synthesized from protocatechualdehyde and malonic acid via the modified Knoevenagel–Doebner reaction and the Luche reduction. The process achieved high to excellent deuteration efficiencies at the aimed positions (i.e., methoxy: > 99%D, α: > 99%D, β: 92%D, and γ: 98%D). DHP was prepared solely from coniferyl alcohol-d7, and its NMR spectra were compared with those from coniferyl alcohol. The results indicated that: (1) the deuterium atoms at methoxy group, α- and β-positions were highly retained even in the DHP, and their signals were effectively suppressed; (2) a part of the deuterium at γ-position was replaced with H through the reaction; (3) meanwhile, the formation of γ-CH2 was negligible. This study demonstrated that coniferyl alcohol-d7 could “silence” the majority of the signals even when converted to DHP. Highly deuterated monolignols can be a unique molecular tool that can differentiate the signals of interest from those derived from monolignols.
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来源期刊
Journal of Wood Science
Journal of Wood Science 工程技术-材料科学:纸与木材
CiteScore
5.40
自引率
10.30%
发文量
57
审稿时长
6 months
期刊介绍: The Journal of Wood Science is the official journal of the Japan Wood Research Society. This journal provides an international forum for the exchange of knowledge and the discussion of current issues in wood and its utilization. The journal publishes original articles on basic and applied research dealing with the science, technology, and engineering of wood, wood components, wood and wood-based products, and wood constructions. Articles concerned with pulp and paper, fiber resources from non-woody plants, wood-inhabiting insects and fungi, wood biomass, and environmental and ecological issues in forest products are also included. In addition to original articles, the journal publishes review articles on selected topics concerning wood science and related fields. The editors welcome the submission of manuscripts from any country.
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