Search results
Results: 8
Number of items: 8
-
Slattery, A., Wen, Z., Tenblad, P., Sanjosé-Orduna, J., Pintossi, D., den Hartog, T., & Noël, T. (2024). Automated self-optimization, intensification, and scale-up of photocatalysis in flow. Science, 383(6681), Article eadj1817. https://doi.org/10.1126/science.adj1817 -
Capaldo, L., Wen, Z., & Noël, T. (2023). A field guide to flow chemistry for synthetic organic chemists. Chemical Science, 14(16), 4230-4247 . https://doi.org/10.1039/d3sc00992k -
Capaldo, L., Wan, T., Wen, Z., Laudadio, G., Lammers, R., Rincon, J. A., García-Losada, P., Mateos, C., Frederick, M. O., Broersma, R., & Noël, T. (2022, October 8). Accelerated and Scalable C(sp3)–H Amination via Decatungstate Photocatalysis Using a Flow Photoreactor Equipped with High-Intensity LEDs [Data set]. Universiteit van Amsterdam. https://doi.org/10.21942/uva.17040392.v2
-
Dong, Z., Zondag, S. D. A., Schmid, M., Wen, Z., & Noël, T. (2022). A meso-scale ultrasonic milli-reactor enables gas–liquid-solid photocatalytic reactions in flow. Chemical engineering journal, 428, Article 130968. https://doi.org/10.1016/j.cej.2021.130968 -
Wan, T., Wen, Z., Laudadio, G., Capaldo, L., Lammers, R., Rincón, J. A., García-Losada, P., Mateos, C., Frederick, M. O., Broersma, R., & Noël, T. (2022). Accelerated and Scalable C(sp3)-H Amination via Decatungstate Photocatalysis Using a Flow Photoreactor Equipped with High-Intensity LEDs. ACS Central Science, 8(1), 51-56. https://doi.org/10.1021/acscentsci.1c01109 -
Wen, Z., Pintossi, D., Nuño, M., & Noël, T. (2022). Membrane-based TBADT recovery as a strategy to increase the sustainability of continuous-flow photocatalytic HAT transformations. Nature Communications, 13, Article 6147. https://doi.org/10.1038/s41467-022-33821-9 -
Wen, Z., Wan, T., Vijeta, A., Casadevall, C., Buglioni, L., Reisner, E., & Noel, T. (2021). Photocatalytic C-H Azolation of Arenes Using Heterogeneous Carbon Nitride in Batch and Flow. ChemSusChem, 14(23), 5265-5270. https://doi.org/10.1002/cssc.202101767
Page of