Home /Research /Delocalized, Asynchronous, Closed-Loop Discovery of Organic Laser Emitters
OTHER

Delocalized, Asynchronous, Closed-Loop Discovery of Organic Laser Emitters

Felix Strieth‐Kalthoff, Han Hao, Vandana Rathore, Joshua S. Derasp, Théophile Gaudin, Nicholas H. Angello, Martin Seifrid, Ekaterina Trushina, Mason Guy, Junliang Liu, Xun Tang, Masashi Mamada, Wesley Wang, Tuul Tsagaantsooj, Cyrille Lavigne, Robert Pollice, Tony Wu, Kazuhiro Hotta, L Bodø, Shangyu Li

Year
2023
Citations
16
Access
Open access

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 enables delocalized and asynchronous design–make–test–analyze cycles. We showcase 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 AI experiment planner, resulted in the discovery of 21 new state-of-the-art materials. Automated 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.

Keywords

WorkflowComputer scienceAsynchronous communicationCloud computingCharacterization (materials science)State (computer science)NanotechnologyMaterials scienceTelecommunicationsDatabase

Related papers

Browse all OTHER papers