Colaço Miriam, Ewert Julia, von Glasenapp Jan-Simon, Pischel Uwe, Herges Rainer, Basílio Nuno
Laboratório Associado para a Química Verde (LAQV), Rede de Química e Tecnologia (REQUIMTE), Departamento de Química, Faculdade de Ciências e Tecnologia, Universidade NOVA de Lisboa, 2829-516 Caparica, Portugal.
Otto Diels-Institute of Organic Chemistry, Christian-Albrechts-University Kiel, Otto Hahn Platz 4, 24118 Kiel, Germany.
J Am Chem Soc. 2025 Jan 8;147(1):734-745. doi: 10.1021/jacs.4c13353. Epub 2024 Dec 25.
The photoswitching of supramolecular host-guest complexes is the basis of numerous molecularly controlled macroscopic functions, such as sol-gel transition, photopharmacology, the active transport of ions or molecules, light-powered molecular machines, and much more. The most commonly used systems employ photoactive azobenzene guests and synthetic host molecules, which bind as the stable isomers and dissociate as the forms after exposure to UV light. We present a new, extraordinarily efficient cucurbit[7]uril (CB7)/diazocine host/guest complex with inverted stability that self-assembles under UV irradiation and dissociates in the dark. The association constants of the and isomers in water differ by more than 10-fold. We also show that the thermally activated → isomerization is significantly accelerated by CB7, which is a rare case of enzyme-like catalysis by transition state stabilization without product inhibition. In contrast to CB7, cucurbit[8]uril (CB8) binds both isomers with high affinity, showing good selectivity (∼1000-fold) toward the isomer. Notably, this isomer preferentially binds CB8 relative to CB7 by a factor greater than 1 × 10. We also use the system to introduce a supramolecular photoacid that builds on the increased basicity of a guest bound to CB7 and on the extremely high affinity of the isomer, which is utilized to displace the acid from CB7, thereby switching the pH of the solution.
超分子主客体复合物的光开关特性是众多分子控制宏观功能的基础,如溶胶-凝胶转变、光药理学、离子或分子的主动运输、光驱动分子机器等等。最常用的体系采用光活性偶氮苯客体和合成主体分子,它们以稳定的异构体形式结合,并在紫外光照射后以反式形式解离。我们提出了一种新型的、效率极高的葫芦[7]脲(CB7)/重氮环辛烷主客体复合物,其稳定性相反,在紫外光照射下自组装,在黑暗中解离。顺式和反式异构体在水中的缔合常数相差10倍以上。我们还表明,CB7能显著加速热激活的顺式→反式异构化,这是一种罕见的通过过渡态稳定而无产物抑制的类酶催化情况。与CB7不同,葫芦[8]脲(CB8)对两种异构体都有高亲和力,对反式异构体表现出良好的选择性(约1000倍)。值得注意的是,相对于CB7,这种异构体优先与CB8结合,其系数大于1×10。我们还利用该体系引入了一种超分子光酸,它基于与CB7结合的客体碱性增强以及反式异构体的极高亲和力,利用这种亲和力将酸从CB7中置换出来,从而改变溶液的pH值。