{"ok":true,"article":{"slug":"supramolecular-nanofibers-paired-with-nanohole-substrate-improve-exciton-transpo-fa8e193b","title":"Supramolecular nanofibers paired with nanohole substrate improve exciton transport in organic solid","url":"https://phys.org/news/2026-08-supramolecular-nanofibers-paired-nanohole-substrate.html","canonical":"https://www.aimode.news/article/supramolecular-nanofibers-paired-with-nanohole-substrate-improve-exciton-transpo-fa8e193b","sourceName":"Phys.org","summary":"Self-assembling, anthracene-based supramolecular nanofibers can enable excitons to migrate hundreds of nanometers, according to a new experimental finding by researchers at Science Tokyo. Coupling these nanofibers with a plasmonic gold nanohole substrate further doubles exciton diffusivity. By mitigating the limited diffusivity of singlet excitons in organic semiconductors, this approach offers a new strategy for improving optoelectronic technologies.","category":"Science","image":null,"lang":"en","publishedAt":"2026-08-19T23:40:01+00:00","createdAt":"2026-08-20T00:00:13.783479+00:00"}}