This profile is built from public research funding records (CIHR, NSERC and SSHRC) and PubMed. We have not imported them from a University of British Columbia directory, so their courses and email address may be missing. Find their university profile.
Research
Latest papers
Accelerating discovery in natural science laboratories with AI and robotics: Perspectives and challenges.
Science robotics · 2025
Accelerated chemical science with AI.
Digital discovery · 2024
Latest funding
- $60,000
Leveraging Signal Deconvolution to Enable Reaction Monitoring using Bench-top Nuclear Magnetic Resonance
NSERC · 2022 · Principal investigator
- $316,000
Integrating automated experimentation with process analytical technology
NSERC · 2021 · Principal investigator
- $120,000
Integrating automated experimentation with process analytical technology
NSERC · 2021 · Principal investigator
2 publications.
Accelerating discovery in natural science laboratories with AI and robotics: Perspectives and challenges.
Cooper AI, Courtney P, Darvish K, Eckhoff M, Fakhruldeen H, Gabrielli A, Garg A, Haddadin S, Harada K, Hein J, Hübner M, Knobbe D, Pizzuto G, Shkurti F, Shrestha R, Thurow K, Vescovi R, Vogel-Heuser B, Wolf Á, Yoshikawa N, Zeng Y, Zhou Z, Zwirnmann H
Accelerated chemical science with AI.
Back S, Aspuru-Guzik A, Ceriotti M, Gryn'ova G, Grzybowski B, Gu GH, Hein J, Hippalgaonkar K, Hormázabal R, Jung Y, Kim S, Kim WY, Moosavi SM, Noh J, Park C, Schrier J, Schwaller P, Tsuda K, Vegge T, von Lilienfeld OA, Walsh A
Leveraging Signal Deconvolution to Enable Reaction Monitoring using Bench-top Nuclear Magnetic Resonance
Principal investigators: Hein, Jason JEH
Keywords: Automated Reaction Monitoring; Automation and Autonomous Systems; Catalysis; Enantioselective Crystallization; Instrument Fabrication and Prototype; Process Analytical Technology; Process Chemistry; Reaction Mechanism; Robotics and Laboratory Automation; Scale Up and Chemical Manufacture
Integrating automated experimentation with process analytical technology
Principal investigators: Hein, Jason
Keywords: automated experimentation; organic synthesis; mechanism elucidation; process chemistry; reaction optimization
Integrating automated experimentation with process analytical technology
Principal investigators: Hein, Jason
Ultrahigh performance liquid chromatography - triple quadruple mass spectrometer for quantitative chemical and biochemical analysis
Principal investigators: Huan, Tao
Liquid Chromatography System for the purification of peptidic radiotracers, bioconjugates, nucleosides, and drug-like molecules
Principal investigators: Perrin, David
Combined orthogonal spectroscopic analysis and chemometrics as PAT tool for calibration and self-optimizing chemical processes (NMRplusX)
Principal investigators: Hein, Jason
Advanced prototype for continuous crystal sizing
Principal investigators: Hein, Jason
400MHZ BROADBAND INVERSE DETECTION NMR SPECTROMETER
Principal investigators: Schafer, Laurel
Harnessing the benefits of continuous crystallization to precisely control particular size distribution of active pharmaceutical ingredients
Principal investigators: Hein, Jason
Combined HPLC-NMR reaction progress monitoring using the NMReady.
Principal investigators: Hein, Jason
From CIHR, NSERC and SSHRC funding decisions: CIHR since 2008, NSERC since 1991 and SSHRC since 1998, including their latest published competition results.
Frequent collaborators
- Jason Hein and Florian Shkurti: 1 shared paper
- Jason Hein and Animesh Garg: 1 shared paper
- Florian Shkurti and Animesh Garg: 1 shared paper
- Mathematical and Computational Sciences
- Chemistry
Co-authors at University of British Columbia, colored by department. Thicker lines mean more shared papers; select anyone to open their profile and their own map.
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