首页> 外文期刊>The Journal of Organic Chemistry >Helical molecular duplex strands: Multiple hydrogen-bond-mediated assembly of self-complementary oligomeric hydrazide derivatives
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Helical molecular duplex strands: Multiple hydrogen-bond-mediated assembly of self-complementary oligomeric hydrazide derivatives

机译:螺旋分子双链:自互补低聚酰肼衍生物的多重氢键介导组装

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Careful examination of the X-ray structure of a ditopic hydrazide derivative 7 led to the concept that with malonyl groups as interhydrazide linkers hydrogen-bonding-mediated molecular duplex strands might be obtained. Complexation studies between 7, 8, and 9 confirmed this hypothesis. Two quadruple hydrogen-bonded heterodimers formed, in which spectator repulsive secondary electrostatic interaction was found to play an important role in determining the stability of the complexes. Extensive studies on 1-4 indicated that the hydrogen-bonding mode could persist in longer oligomeric hydrazide derivatives with chain extension from monomer to tetramer. Molecular duplex strands via two to fourteen interstrand hydrogen bonds were obtained. In addition to affecting the stability of the duplex strands, spectator repulsive secondary electrostatic interaction also played an important role in determining dynamic behavior of the duplex strands as exemplified by variable temperature H-1 NMR experiments. IR studies confirmed stronger hydrogen bonding in the longer oligomers. The assemblies of 1-4 on HOPG were also studied by STM technology. Molecular mechanical calculations further revealed double-helical structures for the longer oligomers. The results provide new opportunities for development of polymeric helical duplexes with well-defined structures.
机译:仔细检查对位酰肼衍生物7的X射线结构,得出了这样一个概念,即丙二酰基作为酰肼间的连接基可以得到氢键介导的分子双链。 7、8和9之间的复杂性研究证实了这一假设。形成了两个四氢键合的异二聚体,其中观众排斥的次级静电相互作用被发现在确定配合物的稳定性中起重要作用。对1-4的广泛研究表明,氢键模式可以在较长的低聚酰肼衍生物中持续存在,且其扩链从单体延伸至四聚体。通过两个到十四个链间氢键获得分子双链。除了影响双链的稳定性外,观众的排斥性二次静电相互作用在确定双链的动态行为方面也起着重要作用,如可变温度H-1 NMR实验所证明。红外研究证实,较长的低聚物中的氢键较强。还通过STM技术研究了HOPG上1-4的组装。分子力学计算进一步揭示了较长寡聚物的双螺旋结构。该结果为开发具有明确结构的聚合物螺旋双链体提供了新的机会。

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