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Published on: November 4, 2021
Twin Pathways: Discerning the Origins of Multiply Twinned Colloidal Nanoparticles
Jingshan S Du1,2, Wenjie Zhou1,3, Sara M Rupich1
1International Institute for Nanotechnology, Northwestern University, Evanston, IL, 60208, USA.
Abstract:
The structure of multiply twinned particles (MTPs) provides an example of how specific crystallographic features dictate the geometric shape of finite-sized crystals. The formation of MTPs during colloidal synthesis can occur through at least two different pathways: 1) growth from multiply twinned seeds or 2) the stepwise formation of new twin boundaries on single-crystalline seeds (either by particle overgrowth or multiparticle attachment). By utilizing in situ transmission electron microscopy, recent studies have provided real-time evidence for both pathways. Looking forward, the knowledge of specific evolution pathways that occur under a given synthetic condition will aid in the design of robust MTP syntheses. More importantly, further studies pertaining to the structural evolution and energetics of nanoparticles are needed to provide a complete understanding of MTP formation pathways.

