Autonomous discovery in the chemical sciences part I: Progress CW Coley, NS Eyke, KF Jensen Angewandte Chemie International Edition 59 (51), 22858-22893, 2020 | 364* | 2020 |
Iterative experimental design based on active machine learning reduces the experimental burden associated with reaction screening NS Eyke, WH Green, KF Jensen Reaction Chemistry & Engineering 5 (10), 1963-1972, 2020 | 97 | 2020 |
Toward machine learning-enhanced high-throughput experimentation NS Eyke, BA Koscher, KF Jensen Trends in Chemistry 3 (2), 120-132, 2021 | 91 | 2021 |
Development and scale-up of a continuous reaction for production of an active pharmaceutical ingredient intermediate JP McMullen, CH Marton, BD Sherry, G Spencer, J Kukura, NS Eyke Organic Process Research & Development 22 (9), 1208-1213, 2018 | 23 | 2018 |
Autonome Entdeckung in den chemischen Wissenschaften, Teil I: Fortschritt CW Coley, NS Eyke, KF Jensen Angewandte Chemie 132 (51), 23054-23091, 2020 | 10 | 2020 |
Parallel multi-droplet platform for reaction kinetics and optimization NS Eyke, TN Schneider, B Jin, T Hart, S Monfette, JM Hawkins, PD Morse, ... Chemical Science 14 (33), 8798-8809, 2023 | 8 | 2023 |
Automation and Microfluidics for the Efficient, Fast, and Focused Reaction Development of Asymmetric Hydrogenation Catalysis R van Putten, NS Eyke, LM Baumgartner, VL Schultz, GA Filonenko, ... ChemSusChem 15 (14), e202200333, 2022 | 6 | 2022 |
Autonome Entdeckung in den chemischen Wissenschaften, Teil II: Ausblick CW Coley, NS Eyke, KF Jensen Angewandte Chemie 132 (52), 23620-23643, 2020 | 4 | 2020 |
Electromechanically driven oscillatory flow in fluidic systems LT Deck, N Eyke, T Hart, KF Jensen US Patent App. 17/921,956, 2023 | 1 | 2023 |
Automating reaction development: hardware and software for fully-automated high-fidelity navigation of high-dimensional chemical reaction space NS Eyke Massachusetts Institute of Technology, 2022 | | 2022 |