Cucurbituril-X

Resources

Tracking the latest research breakthroughs and academic frontiers in the cucurbituril field

Huaqiao University & Xiamen Institute: CB[7] Supramolecular Confinement Strategy for Synergistic Fe Single-Atom and Cluster ORR Electrocatalyst
Research PaperAngewandte Chemie International Edition
2026-08-18

Huaqiao University & Xiamen Institute: CB[7] Supramolecular Confinement Strategy for Synergistic Fe Single-Atom and Cluster ORR Electrocatalyst

Developed a supramolecular confinement strategy using cucurbit[7]uril to fabricate oxygen reduction electrocatalysts with synergistic active sites comprising highly loaded Fe single atoms and Fe clusters, significantly outperforming commercial Pt/C in zinc-air batteries.

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Syracuse University's Professor Xiaoran Hu: A cucurbit[7]uril–adamantane noncovalent click-to-release strategy enables a new pathway for supramolecular bioorthogonal activation.
Research PaperAngewandte Chemie International Edition
2026-08-18

Professor Xiaoran Hu's team at Syracuse University, USA: A cucurbit[7]uril–adamantane noncovalent click-to-release strategy opens a new route for supramolecular bioorthogonal activation.

For the first time, a noncovalent click-to-release system based on host–guest interactions between cucurbit[7]uril and adamantane (CB[7]–Ad) was developed. This approach overcomes key limitations of conventional covalent click-to-release reactions, including susceptibility to oxidation, slow kinetics, and numerous side reactions. The work introduces a new supramolecular strategy for stimuli-responsive drug delivery and functional materials.

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Tsinghua University Team Publishes Breakthrough CB[7] Supramolecular Nanopore Anion-Conducting Membrane in Nature
Research PaperNature
2026-07-15

Tsinghua University Team Publishes Breakthrough CB[7] Supramolecular Nanopore Anion-Conducting Membrane in Nature

Developed cucurbit[7]uril-based supramolecular nanoporous anion-conducting membranes, overcoming the century-old trade-off among high conductivity, mechanical stability, and alkali resistance.

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Jilin University Team Publishes Breakthrough CB[8] Supramolecular Confinement Self-Sensitized Photooxidation in JACS
Research PaperJournal of the American Chemical Society (JACS)
2026-07-10

Jilin University Team Publishes Breakthrough CB[8] Supramolecular Confinement Self-Sensitized Photooxidation in JACS

Leveraging cucurbit[8]uril supramolecular confinement to transform static heavy-atom effects into an excited-state regulation tool that is precisely switchable via molecular spatial conformations.

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