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Autonomous nanomanufacturing of lead-free metal halide perovskite nanocrystals using a self-driving fluidic lab

  • Sina Sadeghi
  • , Fazel Bateni
  • , Taekhoon Kim
  • , Dae Yong Son
  • , Jeffrey A. Bennett
  • , Negin Orouji
  • , Venkat S. Punati
  • , Christine Stark
  • , Teagan D. Cerra
  • , Rami Awad
  • , Fernando Delgado-Licona
  • , Jinge Xu
  • , Nikolai Mukhin
  • , Hannah Dickerson
  • , Kristofer G. Reyes
  • , Milad Abolhasani
  • North Carolina State University
  • Samsung
  • Weber State University

Research output: Contribution to journalArticlepeer-review

29 Scopus citations

Abstract

Lead-based metal halide perovskite (MHP) nanocrystals (NCs) have emerged as a promising class of semiconducting nanomaterials for a wide range of optoelectronic and photoelectronic applications. However, the intrinsic lead toxicity of MHP NCs has significantly hampered their large-scale device applications. Copper-base MHP NCs with composition-tunable optical properties have emerged as a prominent lead-free MHP NC candidate. However, comprehensive synthesis space exploration, development, and synthesis science studies of copper-based MHP NCs have been limited by the manual nature of flask-based synthesis and characterization methods. In this study, we present an autonomous approach for the development of lead-free MHP NCs via seamless integration of a modular microfluidic platform with machine learning-assisted NC synthesis modeling and experiment selection to establish a self-driving fluidic lab for accelerated NC synthesis science studies. For the first time, a successful and reproducible in-flow synthesis of Cs3Cu2I5 NCs is presented. Autonomous experimentation is then employed for rapid in-flow synthesis science studies of Cs3Cu2I5 NCs. The autonomously generated experimental NC synthesis dataset is then utilized for fast-tracked synthetic route optimization of high-performing Cs3Cu2I5 NCs.

Original languageEnglish
Pages (from-to)580-591
Number of pages12
JournalNanoscale
Volume16
Issue number2
DOIs
StatePublished - Dec 13 2023

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