Morris David T J, Wales Steven M, Tilly David P, Farrar Elliot H E, Grayson Matthew N, Ward John W, Clayden Jonathan
School of Chemistry, University of Bristol, Cantock's Close, Bristol BS8 1TS, UK.
Department of Chemistry, University of Bath, Claverton Down, Bath BA2 7AY, UK.
Chem. 2021 Sep 9;7(9):2460-2472. doi: 10.1016/j.chempr.2021.06.022.
Communication of information through the global switching of conformation in synthetic molecules has hitherto entailed the inversion of chirality. Here, we report a class of oligomer through which information may be communicated through a global reversal of polarity. Ethylene-bridged oligoureas are constitutionally symmetrical, conformationally flexible molecules organized by a single chain of hydrogen bonds running the full length of the oligomer. NMR reveals that this hydrogen-bonded chain may undergo a coherent reversal of directionality. The directional uniformity of the hydrogen-bond chain allows it to act as a channel for the spatial communication of information on a molecular scale. A binding site at the terminus of an oligomer detects local information about changes in pH or anion concentration and transmits that information-in the form of a directionality switch in the hydrogen-bond chain-to a remote polarity-sensitive fluorophore. This propagation of polarity-encoded information provides a new mechanism for molecular communication.
迄今为止,通过合成分子中构象的全局切换来传递信息一直需要手性反转。在此,我们报道了一类低聚物,通过它可以通过极性的全局反转来传递信息。乙烯桥连的低聚脲是结构对称、构象灵活的分子,由贯穿低聚物全长的单链氢键组织而成。核磁共振显示,这条氢键链可能会发生方向性的连贯反转。氢键链的方向一致性使其能够作为分子尺度上信息空间传递的通道。低聚物末端的一个结合位点检测有关pH值或阴离子浓度变化的局部信息,并将该信息——以氢键链中方向性开关的形式——传递给远程极性敏感荧光团。这种极性编码信息的传播为分子通信提供了一种新机制。