Xu Houyang, Ronson Tanya K, Heard Andrew W, Teeuwen Paula C P, Schneider Laura, Pracht Philipp, Thoburn John D, Wales David J, Nitschke Jonathan R
Yusuf Hamied Department of Chemistry, University of Cambridge, Cambridge, UK.
Department of Chemistry and Chemical Biology, TU Dortmund University, Dortmund, Germany.
Nat Chem. 2025 Feb;17(2):289-296. doi: 10.1038/s41557-024-01708-5. Epub 2025 Jan 8.
The creation of hosts capable of accommodating different guest molecules may enable these hosts to play useful roles in chemical purifications, among other applications. Metal-organic cages are excellent hosts for various guests, but they generally incorporate rigid structural units that hinder dynamic adaptation to specific guests. Here we report a conformationally adaptable pseudo-cubic cage that can dynamically increase its cavity volume to fit guests with differing sizes. This pseudo-cube incorporates a tetramine subcomponent with 2,6-naphthalene arms that cooperatively adopt a non-planar conformation, enabling the cage faces to switch between endo and exo states. A wide range of guest molecules were observed to bind within the cavity of this cage, spanning a range of sizes from 46% to 154% of the cavity volume of the empty cage. Experimental and computational evidence characterizes the flipping of cage faces from endo to exo, expanding the cavity upon binding of larger guests.
能够容纳不同客体分子的主体的创建可能使这些主体在化学提纯及其他应用中发挥有用的作用。金属有机笼是各种客体的优良主体,但它们通常包含阻碍对特定客体进行动态适配的刚性结构单元。在此,我们报告了一种构象可适应的伪立方笼,它能够动态增加其腔体积以容纳不同大小的客体。这种伪立方体包含一个带有2,6 - 萘臂的四胺亚组分,它们协同采用非平面构象,使笼面能够在内侧和外侧状态之间切换。观察到多种客体分子结合在该笼的腔内,其大小范围为空笼腔体积的46%至154%。实验和计算证据表明笼面从内侧翻转到外侧,在结合较大客体时扩大了腔体积。