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Main-Chain Optically Active Riboflavin Polymer for Asymmetric Catalysis and Its Vapochromic Behavior

机译:用于不对称催化的主链光学活性核黄素聚合物及其气相致变色行为

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摘要

A novel optically active polymer consisting of riboflavin units as the main chain (poly-1) was prepared from naturally occurring riboflavin (vitamin B_2) in three steps. The riboflavin residues of poly-1 were converted to 5-ethyl- riboflavinium cations (giving poly-2), which could be reversibly transformed into the corresponding 4a-hydroxyribo- flavins (giving poly-2OH) through hydroxylation/dehydrox- ylation reactions. This reversible structural change was accompanied by a visible color change along with significant changes in the absorption and circular dichroism (CD) spectra. The nuclear Overhauser effect spectroscopy (NOESY) and CD spectra of poly-2 revealed a supramolecularly twisted helical structure with excess one-handedness through face-to-face stacking of the intermolecular riboflavinium units, as evidenced by the apparent NOE correlations between the interstrand riboflavin units and intense Cotton effects induced in the flavinium chromophore regions. The hydroxylation of poly-2 at the 4a-position proceeded in a diastereoselective fashion via chirality transfer from the induced supramolecular helical chirality assisted by the ribityl pendants, resulting in a 83:17 diastereomeric mixture of poly-2OH. The diastereoselectivity of poly-2 was remarkably higher than that of the corresponding monomeric model (64.5:35.5), indicating amplification of the chirality resulting from the supramolecular chirality induced in the stacked poly-2 backbones. The optically active poly-2 efficiently catalyzed the asymmetric organocatalytic oxidation of sulfides with hydrogen peroxide, yielding optically active sulfoxides with up to 60% enantiomeric excess (ee), whose enantioselectivity was higher than that catalyzed by the monomeric counterpart (30% ee). In addition, upon exposure to primary and secondary amines, poly-2 exhibited unique high-speed vapochromic behavior arising from the formation of 4a-amine adducts in the film.
机译:由天然存在的核黄素(维生素B_2)分三步制备由核黄素单元作为主链的新型旋光聚合物(poly-1)。将poly-1的核黄素残基转化为5-乙基-核黄素阳离子(生成poly-2),可以通过羟基化/脱羟基化反应可逆地转化为相应的4a-羟基核黄素(生成poly-2OH)。这种可逆的结构变化伴随着可见的颜色变化以及吸收和圆二色性(CD)光谱的显着变化。 poly-2的核Overhauser效应谱(NOESY)和CD谱显示分子间核黄素单元通过面对面堆叠而形成了超分子扭曲的螺旋结构,具有多余的单手性,这由链状核黄素之间明显的NOE相关性证明了这一点。在黄酮发色团区域中诱导的单位和强烈的棉花效应。 poly-2在4a位的羟化反应是非对映选择性的,通过手性转移从手性转移而来,该手性由核糖核侧基辅助,由诱导的超分子螺旋手性形成,从而形成83:17的poly-2OH非对映异构体混合物。 poly-2的非对映选择性显着高于相应的单体模型(64.5:35.5),表明在堆叠的poly-2主链中诱导的超分子手性导致手性的放大。旋光性poly-2有效地催化了过氧化氢对硫化物的不对称有机催化氧化,产生的旋光性亚砜具有高达60%的对映体过量(ee),其对映选择性高于单体对应物(30%ee)催化的对映选择性。另外,在暴露于伯胺和仲胺时,poly-2表现出独特的高速气相致变色行为,这是由于膜中形成了4a-胺加合物而引起的。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2012年第36期|p.15103-15113|共11页
  • 作者单位

    Department of Molecular Design and Engineering, Graduate School of Engineering, Nagoya University, Nagoya 464-8603, Japan;

    Department of Molecular Design and Engineering, Graduate School of Engineering, Nagoya University, Nagoya 464-8603, Japan;

    Department of Molecular Design and Engineering, Graduate School of Engineering, Nagoya University, Nagoya 464-8603, Japan;

    Department of Molecular Design and Engineering, Graduate School of Engineering, Nagoya University, Nagoya 464-8603, Japan;

  • 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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  • 正文语种 eng
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