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首页> 外文期刊>Journal of the American Chemical Society >Single-Conformation Ultraviolet and Infrared Spectra of Jet-Cooled Monolignols: p-Coumaryl Alcohol, Coniferyl Alcohol, and Sinapyl Alcohol
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Single-Conformation Ultraviolet and Infrared Spectra of Jet-Cooled Monolignols: p-Coumaryl Alcohol, Coniferyl Alcohol, and Sinapyl Alcohol

机译:喷气冷却的单木质醇的单形态紫外和红外光谱:对香豆素醇,松柏基醇和锡那皮醇

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摘要

Single-conformation spectroscopy of the three lignin monomers (hereafter "monolignols") p-coumaryl alcohol (pCoumA), coniferyl alcohol (ConA), and sinapyl alcohol (SinA) has been carried out on the isolated molecules cooled in a supersonic expansion. Laser-induced fluorescence excitation, dispersed fluorescence, resonant two photon ionization, UV-UV hole-burning, and resonant ion-dip infrared spectroscopy were carried out as needed to obtain firm assignments for the observed conformers of the three molecules. In each case, two conformers were observed, differing in the relative orientations of the vinyl and OH substituents para to one another on the phenyl ring. In pCoumA, the two conformers have S_0-S_1 origins nearly identical in size, split from one another by only 7 cm , in close analogy with previous results of Morgan et al. on p-vinylphenol (Chem. Phys. 2008,347,340). ConA, with its methoxy group ortho to the OH group, also has two low-energy conformers forming a syn/anti pair, in this case with the OH group locked into an orientation in which it forms an intramolecular H-bond with the adjacent methoxy group. The electronic frequency shift between the two conformers is dramatically increased to 805 cm , with the dominant conformer of ConA (with S_0-S_1 origin at 32 640 cm~(-1)) about 5 times the intensity of its minor counterpart (with S_0-S_1 origin at 33 444 cm~(-1)). The presence of an OH OCH_3 intramolecular H-bond is established by the shift of the OH stretch fundamental of the OH group to 3599 cm~(-1), as it is in o-methoxyphenol (Fujimaki et al. J. Chem. Phys. 1999, 110, 4238). Analogous single-conformation UV and IR spectra of o-methoxy-p vinylphenol show a close similarity to ConA and provide a basis for a firm assignment of the red-shifted (blue-shifted) conformer of both molecules to the syn (anti) conformer. The two observed conformers of SinA, with its two methoxy group straddling the OH group, have S_0-S_1] origins split by 239 cm (33 055 and 33 294 cm ), a value between those in pCoumA and ConA A combination of experimental data and calculations on the three monolignols and simpler derivatives is used to establish that the conformational preferences of the monolignols reflect the preferences of each of the ring substituents separately, enhanced by the presence of the intramolecular OH OCH3 H-bond. Taken as a whole, the presence of multiple flexible substituents locks in certain preferred orientations of the groups relative to one another, even in the apparently flexible allyl alcohol side chain (-CH=CH-CH_2OH), where the OH group orients itself so that the hydrogen is pointed back over the vinyl π cloud in order to minimize interactions between the oxygen lone pairs and the π electrons.
机译:对在超声速冷却下冷却的分离出的分子进行了三种木质素单体(以下称“单醇”),对香豆醇(pCoumA),松柏醇(ConA)和芥子醇(SinA)的单构谱分析。根据需要进行激光诱导的荧光激发,分散的荧光,共振的两个光子电离,UV-UV空穴燃烧和共振的离子浸入红外光谱,以获得对这三个分子所观察到的构象异构体的牢固分配。在每种情况下,观察到两个构象异构体,其乙烯基和OH取代基在苯环上彼此对位的相对取向不同。在pCoumA中,这两个构象子的S_0-S_1来源大小几乎相同,彼此仅相距7厘米,这与Morgan等人的先前结果十分相似。在对乙烯基苯酚上(Chem.Phys.2008,347,340)。 ConA,其甲氧基与OH基相邻,还具有两个低能构象体,形成顺/反对,在这种情况下,OH基被锁定在一个方向上,在该方向上它与相邻的甲氧基形成分子内H键组。两个构象体之间的电子频移显着增加到805 cm,ConA的显性构象体(S_0-S_1起源于32 640 cm〜(-1))大约是其次要构象体(S_0-的强度)的5倍。 S_1起始于33444 cm〜(-1))。 OH OCH_3分子内H键的存在是通过将OH基团的OH拉伸基础移至3599 cm〜(-1)来确定的,就像在邻甲氧基苯酚中一样(Fujimaki等人,J.Chem。 (1999,110,4238)。邻甲氧基对乙烯基苯酚的类似单构型紫外和红外光谱显示与ConA极为相似,并为将两个分子的红移(蓝移)构象体牢固分配给syn(反)构象体提供了基础。观察到的SinA的两个构象异构体,其两个甲氧基横跨在OH基团上,其S_0-S_1]起源分开239 cm(33 055和33 294 cm),介于pCoumA和ConA之间。通过对三个单茂醇和更简单的衍生物的计算,可以确定单茂醇的构象偏好分别反映了每个环取代基的偏好,并通过分子内OH OCH3 H键的存在而增强。总的来说,多个柔性取代基的存在锁定在基团相对于彼此的某些优选方向上,即使在表观柔性的烯丙醇侧链(-CH = CH-CH_2OH)中也是如此,其中OH基团的方向是氢指向乙烯基π云上方,以使氧孤对与π电子之间的相互作用最小化。

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  • 来源
    《Journal of the American Chemical Society 》 |2011年第8期| p.2632-2641| 共10页
  • 作者单位

    Department of Chemistry, Purdue University, West Lafayette, Indiana 47907-2084, United States;

    Department of Chemistry, Purdue University, West Lafayette, Indiana 47907-2084, United States;

    Department of Chemistry, Purdue University, West Lafayette, Indiana 47907-2084, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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