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Autonomous Synthesis of Nanoparticles with Target Scattering Patterns

  • Technical University of Denmark
  • University of Oxford
  • Aarhus University
  • Columbia University
  • MAX IV Laboratory
  • University of A Coruna

Research output: Journal Article or Conference Article in JournalJournal articleResearchpeer-review

Abstract

Controlled synthesis of materials with specified atomic structures underpins technological advances yet remains reliant on iterative, trial-and-error approaches. Nanoparticles (NPs), whose atomic arrangement dictates their emergent properties,1–5 are particularly challenging to synthesize due to numerous tunable parameters. Here, we introduce an autonomous approach that explicitly targets atomic-scale structure through scattering patterns. Our method autonomously designs synthesis protocols by matching real-time experimental total scattering (TS) and pair distribution function (PDF) data to simulated target patterns, without requiring embedded synthesis knowledge. We demonstrate this capability at a synchrotron by targeting two structurally distinct gold NP scattering patterns: 5 nm decahedral and 10 nm face-centered cubic structures. Ultimately, specifying target scattering patterns and autonomously approaching synthesis protocols that reproduce them experimentally may enable on-demand, atomic structure-informed materials design. ScatterLab thus provides a generalizable blueprint for autonomous, atomic structure-targeted synthesis across diverse systems and applications.
Original languageEnglish
JournalACS Nano
Volume20
Issue number8
Pages (from-to)6767-6782
Number of pages16
ISSN1936-0851
DOIs
Publication statusPublished - 18 Feb 2026

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