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Outputs (3)

On-chip processing of particles and cells via multilaminar flow streams (2013)
Journal Article
Tarn, M. D., Lopez-Martinez, M. J., & Pamme, N. (2014). On-chip processing of particles and cells via multilaminar flow streams. Analytical and Bioanalytical Chemistry, 406(1), 139-161. https://doi.org/10.1007/s00216-013-7363-6

The processing of particles, cells, and droplets for reactions, analyses, labeling, and coating is an important aspect of many microfluidic workflows. However, performing multi-step processes is typically a laborious and timeconsuming endeavor. By ex... Read More about On-chip processing of particles and cells via multilaminar flow streams.

The preparation of magnetic iron oxide nanoparticles in microreactors (2013)
Journal Article
Simmons, M., Wiles, C., Rocher, V., Francesconi, M. G., & Watts, P. (2013). The preparation of magnetic iron oxide nanoparticles in microreactors. Journal of flow chemistry, 3(1), 7-10. https://doi.org/10.1556/JFC-D-12-00024

The preparation of magnetic iron oxide nanoparticles within microreactors is reported. The proportion of γ-Fe2O3 and Fe 3O4 in the sample was determined, an important parameter for reproducibility in applications. © 2013 Akadémiai Kiadó.

Radiochemistry on chip: towards dose-on-demand synthesis of PET radiopharmaceuticals (2013)
Journal Article
Arima, V., Pascali, G., Lade, O., Kretschmer, H. R., Bernsdorf, I., Hammond, V., Watts, P., De Leonardis, F., Tarn, M. D., Cvetkovic, B. Z., Dittrich, P. S., Vasovic, N., Duane, R., Jaksic, A., Pamme, N., Zacheo, A., Zizzari, A., Marra, L., Perrone, E., Salvadori, P. A., & Rinaldi, R. (2013). Radiochemistry on chip: towards dose-on-demand synthesis of PET radiopharmaceuticals. Lab on a chip, 13(12), 2328-2336. https://doi.org/10.1039/c3lc00055a

We have developed an integrated microfluidic platform for producing 2-[¹⁸F]-fluoro-2-deoxy-D-glucose (¹⁸F-FDG) in continuous flow from a single bolus of radioactive isotope solution, with constant product yields achieved throughout the operation that... Read More about Radiochemistry on chip: towards dose-on-demand synthesis of PET radiopharmaceuticals.