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Decoding the Consequences of Increasing the Size of Self-Assembling Tricarboxamides on Chiral Amplification

机译:解释增加自组装三羧酸甲酰的手性扩增的后果

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摘要

A complete series of experimental and theoretical investigations on the supramolecular polymerization of chiral (1 and 2) and achiral (3) oligo(phenylene ethynylene) tricarboxamides (OPE-TAs) is reported. The performance of seargents-and-soldiers (SaS) and majority rules (MR) experiments has allowed deriving a full set of thermodynamic parameters, including the helix reversal penalty (HRP) and the mismatch penalty (MMP). The results described illustrate the influence exerted by the number of stereogenic centers per monomeric unit and the temperature on the chiral amplification phenomenon. While the HRP decreases upon decreasing the number of chiral side chains, the MMP follows an opposite trend. The experimental trend observed in MR experiments contrasts with that reported for benzenetricarboxamides (BTAs), for which the chiral amplification ability increases by lowering the number of stereogenic centers or increasing the temperature. Theoretical calculations predict that the rotational angle between adjacent monomeric units in the stack (ca. 18 degrees) gradually decreases when decreasing the number of branched chiral side chains and leads to higher MMP values, in good accord with the experimental trend. The reduction of the rotational angle gives rise to less efficient H-bonding interactions between the peripheral amide functional groups and is suggested to provoke a decrease of the HRP as experimentally observed. In BTAs, increasing the number of stereogenic centers per monomeric unit results in a negligible change of the rotation angle between adjacent units (ca. 65 degrees), and, consequently, the steric bulk increases with the number of chiral side chains, leading to higher MMP values. The data presented herein contribute to shed light on the parameters controlling the transfer and amplification of chirality processes in supramolecular polymers, highlighting the enormous influence exerted by the size of the self-assembling unit on the final helical outcome.
机译:据报道了一种完整系列的手性(1和2)和成立(3)寡核苷酸(3)寡核苷酸(3)寡核苷酸(亚苯基乙炔基)三羧酸(OPE-Tas)的一系列实验和理论研究。 Seargents和士兵(SAS)和多数规则(MR)实验的表现允许获得全套热力学参数,包括螺旋逆转刑罚(HRP)和不匹配罚款(MMP)。所描述的结果说明了通过每种单体单元的立体中心的数量和手性扩增现象的温度施加的影响。虽然在减少手性侧链的数量时,HRP减少,但MMP遵循相反的趋势。 MR实验中观察到的实验趋势与苯甲酰酰胺(BTA)报道的实验趋势对比,通过降低立体中心的数量或增加温度,对手性扩增能力增加。理论计算预测,当减少分支手性侧链的数量并达到更高的MMP值时,堆叠在堆叠(约18度)中的相邻单体单元之间的旋转角度逐渐降低,并符合实验趋势。旋转角度的降低导致外周酰胺官能团之间的效率较低的H键合相互作用,并且建议促进HRP的降低,如实验所观察到的。在BTA中,增加每个单体单元的立体中心的数量导致相邻单元(约65度)之间的旋转角度的变化可忽略不计,因此,空间块状随着手性侧链的数量增加,导致更高MMP值。这里呈现的数据有助于揭示控制超分子聚合物中手性过程的转移和扩增的参数的脱光,突出了通过组装单元的大小对最终螺旋结果施加的巨大影响。

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  • 来源
    《Journal of the American Chemical Society》 |2019年第18期|7463-7472|共10页
  • 作者单位

    Univ Complutense Madrid Fac Ciencias Quim Dept Quim Organ E-28040 Madrid Spain;

    Univ Complutense Madrid Fac Ciencias Quim Dept Quim Organ E-28040 Madrid Spain;

    Univ Valencia Inst Ciencia Mol C Catedrat Jose Beltran 2 Paterna 46980 Spain;

    Univ Valencia Inst Ciencia Mol C Catedrat Jose Beltran 2 Paterna 46980 Spain;

    Univ Valencia Inst Ciencia Mol C Catedrat Jose Beltran 2 Paterna 46980 Spain;

    Univ Complutense Madrid Fac Ciencias Quim Dept Quim Organ E-28040 Madrid Spain;

  • 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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