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Delocalized, asynchronous, closed-loop discovery of organic laser emitters

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Title
Delocalized, asynchronous, closed-loop discovery of organic laser emitters
Author(s)
Strieth-Kalthoff, Felix; Hao, Han; Rathore, Vandana; Derasp, Joshua; Gaudin, Théophile; Angello, Nicholas H.; Seifrid, Martin; Trushina, Ekaterina; Guy, Mason; Liu, Junliang; Tang, Xun; Mamada, Masashi; Wang, Wesley; Tsagaantsooj, Tuul; Lavigne, Cyrille; Pollice, Robert; Wu, Tony C.; Hotta, Kazuhiro; Bodo, Leticia; Li, Shangyu; Haddadnia, Mohammad; Wołos, Agnieszka; Roszak, Rafał; Ser, Cher Tian; Bozal-Ginesta, Carlota; Hickman, Riley J.; Vestfrid, Jenya; Aguilar-Granda, Andrés; Klimareva, Elena L.; Sigerson, Ralph C.; Hou, Wenduan; Gahler, Daniel; Lach, Slawomir; Warzybok, Adrian; Borodin, Oleg; Rohrbach, Simon; Sanchez-Lengeling, Benjamin; Adachi, Chihaya; Bartosz A. Grzybowski; Cronin, Leroy; Hein, Jason E.; Burke, Martin D.; Aspuru-Guzik, Alán
Publication Date
2024-05
Journal
Science, v.384, no.6697
Publisher
American Association for the Advancement of Science
Abstract
Contemporary materials discovery requires intricate sequences of synthesis, formulation, and characterization that often span multiple locations with specialized expertise or instrumentation. To accelerate these workflows, we present a cloud-based strategy that enabled delocalized and asynchronous design-make-test-analyze cycles. We showcased this approach through the exploration of molecular gain materials for organic solid-state lasers as a frontier application in molecular optoelectronics. Distributed robotic synthesis and in-line property characterization, orchestrated by a cloud-based artificial intelligence experiment planner, resulted in the discovery of 21 new state-of-the-art materials. Gram-scale synthesis ultimately allowed for the verification of best-in-class stimulated emission in a thin-film device. Demonstrating the asynchronous integration of five laboratories across the globe, this workflow provides a blueprint for delocalizing-and democratizing-scientific discovery. © 2024 American Association for the Advancement of Science. All rights reserved.
URI
https://pr.ibs.re.kr/handle/8788114/15848
DOI
10.1126/science.adk9227
ISSN
0036-8075
Appears in Collections:
Center for Soft and Living Matter(첨단연성물질 연구단) > 1. Journal Papers (저널논문)
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