
Researchers led by Professor Yi-Tsu Chan at Nationwide Taiwan College have created an enormous molecular cage that mimics nature’s nested buildings. This layered nanocage is remarkably secure and may function a miniature reactor for producing gold nanoparticles.
Nested buildings—the place one structure is enclosed inside one other—are widespread in nature, from the protecting shells of viruses to the compartmentalized group of residing cells. These subtle designs permit organic programs to carry out a number of features inside confined areas. But, reproducing such complexity on the molecular stage within the laboratory has remained a formidable problem.
A analysis crew at Nationwide Taiwan College, led by Professor Yi-Tsu Chan, has now taken a serious step ahead by designing a brand new kind of molecular constructing block that self-assembles right into a extremely secure, layered cage.
The ensuing nanocage options two distinct layers: an interior octahedron encapsulated inside an outer truncated tetrahedron. Collectively, they kind an enormous supramolecular construction weighing greater than 44,000 daltons.
The research is revealed within the Journal of the American Chemical Society.
The breakthrough was made potential by making a complementary pair of chemical “ligands,” or connectors, that connect to metallic ions in a approach that’s each dynamic and extremely selective. This design prevents undesirable facet reactions and locks the construction into place, giving the nanocage distinctive stability over prolonged durations.
To substantiate the intricate construction, the researchers mixed state-of-the-art imaging and analytical strategies, together with high-field nuclear magnetic resonance (NMR), small-angle X-ray scattering (SAXS), cryo-electron microscopy (cryo-EM), and high-resolution electron microscopy. These methods offered an in depth view of the structure all the way down to the single-molecule stage.
Past its putting structural design, the nanocage additionally demonstrates purposeful potential. Its hole inside can act as a nanoscale response chamber. In a single check, the crew efficiently generated gold nanoparticles contained in the cavity, showcasing its promise as a tiny chemical reactor.
“This work exhibits how fastidiously designed molecular interactions can result in exact and sturdy architectures that echo nature’s complexity. We consider our strategy opens new alternatives in superior supplies, nanotechnology, and catalysis,” says Prof. Yi-Tsu Chan, corresponding creator of the research.
Extra data:
Soumyakanta Prusty et al, Harnessing Dynamic Heteroleptic Complexation for Self-Meeting of Sturdy Nested Metallo-Supramolecular Cages, Journal of the American Chemical Society (2025). DOI: 10.1021/jacs.5c10891
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Nature-inspired nanocage serves as gold nanoparticle reactor (2025, September 26)
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