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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Conformation-specific spectroscopy and populations of diastereomers of a model monolignol derivative: Chiral effects in a triol chain
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Conformation-specific spectroscopy and populations of diastereomers of a model monolignol derivative: Chiral effects in a triol chain

机译:模型单木酚衍生物的构象特异性光谱学和非对映体种群:三醇链中的手性效应

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Single-conformation spectroscopy of two diastereomers of 1-(4-hydroxy-3-methoxyphenyl)propane-1,2,3-triol (HMPPT) has been carried out under isolated, jet-cooled conditions. HMPPT is a close analog of coniferyl alcohol, one of the three monomers that make up lignin, the aromatic biopolymer that gives structural integrity to plants. In HMPPT, the double bond of coniferyl alcohol has been oxidized to produce an alkyl triol chain with chiral centers at C(α) and C(β), thereby incorporating key aspects of the β-O-4 linkage between monomer subunits that occurs commonly in lignin. Both (R,S)- and (R,R)-HMPPT diastereomers have been synthesized in pure form for study. Resonant two-photon ionization (R2PI), UV hole-burning (UVHB)/IR-UV hole-burning (IR-UV HB), and resonant ion-dip infrared (RIDIR) spectroscopy have been carried out, providing single-conformation UV spectra in the S _0-S_1 region (35200-35800 cm~(-1)) and IR spectra in the hydride stretch region. Five conformers of (R,S)- and four conformers of (R,R)-HMPPT are observed and characterized, leading to assignments for all nine conformers. Spectroscopic signatures for α-β-γ, γ-β-α, and α-γ-β-π chains and two cyclic forms [(αβγ) and (αγβ)] of the glycerol side chain are determined. Infrared ion-gain (IRIG) spectroscopy is used to determine fractional abundances for the (R,S) diastereomer and constrain the populations present in (R,R). The two diastereomers have very different conformational preferences. More than 95% of the population of (R,R) configures the glycerol side chain in a γ-β-α triol chain, while in (R,S)-HMPPT, 51% of the population is in α-β-γ chains that point in the opposite direction, with an additional 21% of the population in H-bonded cycles. The experimental results are compared with calculations to provide a consistent explanation of the diastereomer-specific effects observed.
机译:1-(4-羟基-3-甲氧基苯基)丙烷-1,2,3-三醇(HMPPT)的两个非对映异构体的单构象光谱已在孤立的喷射冷却条件下进行。 HMPPT是松柏醇的紧密类似物,松柏醇是构成木质素的三种单体之一,木质素是赋予植物结构完整性的芳香族生物聚合物。在HMPPT中,针叶醇的双键已被氧化以生成手性中心位于C(α)和C(β)的烷基三醇链,从而结合了通常发生的单体亚基之间的β-O-4键的关键方面在木质素中。 (R,S)-和(R,R)-HMPPT非对映异构体均已以纯净形式合成用于研究。进行了共振双光子电离(R2PI),UV空穴燃烧(UVHB)/ IR-UV空穴燃烧(IR-UV HB)和共振离子浸入红外(RIDIR)光谱,提供了单形态UV S _0-S_1区域(35200-35800 cm〜(-1))的光谱和氢化物拉伸区域的IR光谱。观察并表征了(R,S)-的五个构象异构体和(R,R)-HMPPT的四个构象异构体,从而导致了所有九个构象异构体的分配。确定了α-β-γ,γ-β-α和α-γ-β-π链以及甘油侧链的两个环状形式[(αβγ)和(αγβ)]的光谱特征。红外离子增益(IRIG)光谱用于确定(R,S)非对映异构体的分数丰度,并约束(R,R)中存在的总体。两种非对映异构体具有非常不同的构象偏好。 (R,R)人口中超过95%的人在γ-β-α三醇链上配置甘油侧链,而在(R,S)-HMPPT中,人口中51%的人在α-β-γ中链指向相反的方向,另外有21%的人口处于H键循环中。将实验结果与计算结果进行比较,以对观察到的非对映异构体特异性作用提供一致的解释。

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