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首页> 外文期刊>Journal of the American Chemical Society >TetrazineBox: A Structurally Transformative Toolbox
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TetrazineBox: A Structurally Transformative Toolbox

机译:TetrazineBox:结构上可转换的工具箱

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Synthetic macrocycles capable of undergoing allosteric regulation by responding to versatile external stimuli are the subject of increasing attention in supramolecular science. Herein, we report a structurally transformative tetracationic cyclophane containing two 3,6-bis(4-pyridyl)-l,2,4,5-tetrazine (4-bptz) units, which are linked together by two p-xylylene bridges. The cyclophane, which possesses modular redox states and structural post-modifications, can undergo two reversibly consecutive two-electron reductions, affording first its bisradical dicationic counterpart, and then subsequently the fully reduced species. Furthermore, one single-parent cyclophane can afford effectively three other new analogs through box-to-box cascade transformations, taking advantage of either reductions or an inverse electron-demand Diels— Alder (IEDDA) reaction. While all four new tetracationic cyclophanes adopt rigid and symmetric box-like conformations, their geometries in relation to size, shape, electronic properties, and binding affinities toward polycyclic aromatic hydrocarbons can be readily regulated. This structurally transformative tetracationic cyclophane performs a variety of new tasks as a result of structural post-modifications, thus serving as a toolbox for probing the radical properties and generating rapidly a range of structurally diverse cyclophanes by efficient divergent syntheses. This research lays a solid foundation for the introduction of the structurally transformative tetracationic cyclophane into the realm of mechanically interlocked molecules and will provide a toolbox to construct and operate intelligent molecular machines.
机译:能够通过响应多种外部刺激而经历变构调节的合成大环化合物在超分子科学中日益受到关注。在本文中,我们报道了结构上具有转化性的四阳离子环烷,其包含两个3,6-双(4-吡啶基)-1,2,4,5-四嗪(4-bptz)单元,它们通过两个对二甲苯桥连接在一起。具有模块性氧化还原态和结构后修饰的环烷可以经历两个可逆的连续两电子还原,首先提供其双基双键对应物,然后提供完全还原的物种。此外,一个单亲环烷可以通过盒到盒的级联转换有效地提供其他三个新的类似物,从而利用还原反应或逆电子需求的Diels-Alder反应(IEDDA)。尽管所有四个新的四阳离子环烷都采用刚性且对称的盒状构象,但它们的几何形状与尺寸,形状,电子性质以及对多环芳烃的结合亲和力都可以轻松调节。由于结构的后修饰,该结构上具有转化作用的四阳离子环烷可以执行各种新任务,因此可以用作探测自由基性质并通过有效的发散合成快速生成一系列结构多样的环烷的工具箱。该研究为将结构转化四阳离子环烷引入机械互锁分子领域奠定了坚实的基础,并将为构建和操作智能分子机器提供工具箱。

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