Becker, A.; Andrikopoulou, C.; Bernhardt, P.; Ocampo-Torres, R.; Trocquet, C.; Le Calvé, S.
Development and Optimization of an Airborne Formaldehyde Microfluidic Analytical Device Based on Passive Uptake through a Microporous Tube. Micromachines 2019, 10, 807.
https://doi.org/10.3390/mi10120807
AMA Style
Becker A, Andrikopoulou C, Bernhardt P, Ocampo-Torres R, Trocquet C, Le Calvé S.
Development and Optimization of an Airborne Formaldehyde Microfluidic Analytical Device Based on Passive Uptake through a Microporous Tube. Micromachines. 2019; 10(12):807.
https://doi.org/10.3390/mi10120807
Chicago/Turabian Style
Becker, Anaïs, Christina Andrikopoulou, Pierre Bernhardt, Ruben Ocampo-Torres, Claire Trocquet, and Stéphane Le Calvé.
2019. "Development and Optimization of an Airborne Formaldehyde Microfluidic Analytical Device Based on Passive Uptake through a Microporous Tube" Micromachines 10, no. 12: 807.
https://doi.org/10.3390/mi10120807
APA Style
Becker, A., Andrikopoulou, C., Bernhardt, P., Ocampo-Torres, R., Trocquet, C., & Le Calvé, S.
(2019). Development and Optimization of an Airborne Formaldehyde Microfluidic Analytical Device Based on Passive Uptake through a Microporous Tube. Micromachines, 10(12), 807.
https://doi.org/10.3390/mi10120807