Supramolecular Assemblies of Cucurbit[10]uril Based on Outer Surface Interactions
Yuqing Yao, Qing Liu, Ying Huang, Qian‐Jiang Zhu, Yun‐Qian Zhang, Xin Xiao, Zhu Tao, Gang Wei
Abstract
Yuqing Yao, Qing Liu, Ying Huang, Qian‐Jiang Zhu, Yun‐Qian Zhang, Xin Xiao, Zhu Tao, Gang Wei
Abstract
Using an established method, we isolated a large quantity of cucurbit[10]uril (Q[10]) and prepared Q[10]-based supramolecular assemblies via different approaches. For example, the structure-directing agent [CdCl4]2– was used or the Q[10] molecule itself acted as a self-structure-directing agent to form different Q[10]-based supramolecular assemblies through the outer surface interaction of Q[10]. Generally, the Q[10]-based supramolecular assemblies possess porous features that suggest that Q[n]-based compounds could be used to manufacture molecular sieves and sensors and applied in absorption and separation technologies.
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Using an established method, we isolated a large quantity of cucurbit[10]uril (Q[10]) and prepared Q[10]-based supramolecular assemblies via different approaches. For example, the structure-directing agent [CdCl4]2– was used or the Q[10] molecule itself acted as a self-structure-directing agent to form different Q[10]-based supramolecular assemblies through the outer surface interaction of Q[10]. Generally, the Q[10]-based supramolecular assemblies possess porous features that suggest that Q[n]-based compounds could be used to manufacture molecular sieves and sensors and applied in absorption and separation technologies.
Key concepts: Supramolecular chemistry, Chemistry, Molecule, Molecular sieve, Crystallography, Self-assembly, Biocatalysis, Macromolecule