Stabilizing in-transition phases of superlattices through shape control of silver nanocrystals.

Nagaoka, Yasutaka; Moore, Timothy C; Epishin, Arseniy; Liu, Zhenyang; Cai, Tong; Jin, Na; Hong, Ken Seungmin; Saghy, Peter et al. · Science · 2026

basic_science · Level V

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Abstract

In nanoscale assemblies, observations of structures in the transition pathways between high-symmetry lattices are rare because of the inherent instability of the intermediate phases. We report that silver nanocrystals with shapes similar to truncated octahedra (mecons) self-assemble into superlattices that are stable and resemble a previously unobserved phase that bridges face-centered and body-centered cubic structures along the Nishiyama-Wassermann martensitic pathway. These superlattices exhibited high structural purity and stability and created a robust and tunable dissymmetric phase landscape. Notably, light-matter coupling emerged in these silver nanocrystal superlattices through plasmon-photon hybridization at the quantum level.