Modular, multi-robot integration of laboratories: an autonomous workflow for solid-state chemistry

Amy. M. Lunt, Hatem Fakhruldeen, Gabriella Pizzuto,Louis Longley, Alexander White, Nicola Rankin,Rob Clowes,Ben Alston, Lucia Gigli,Graeme M. Day,Andrew I. Cooper,Samantha Y. Chong

CHEMICAL SCIENCE(2024)

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摘要
Automation can transform productivity in research activities that use liquid handling, such as organic synthesis, but it has made less impact in materials laboratories, which require sample preparation steps and a range of solid-state characterization techniques. For example, powder X-ray diffraction (PXRD) is a key method in materials and pharmaceutical chemistry, but its end-to-end automation is challenging because it involves solid powder handling and sample processing. Here we present a fully autonomous solid-state workflow for PXRD experiments that can match or even surpass manual data quality, encompassing crystal growth, sample preparation, and automated data capture. The workflow involves 12 steps performed by a team of three multipurpose robots, illustrating the power of flexible, modular automation to integrate complex, multitask laboratories. This study presents a modular autonomous workflow for solid-state chemistry comprising three separate robots, allowing automated powder X-ray diffraction to underpin crystalline materials discovery.
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