Tong, Z.; Esser, L.; Galettis, P.; Rudd, D.; Easton, C.D.; Nilghaz, A.; Peng, B.; Zhu, D.; Thissen, H.; Martin, J.H.;
et al. Fluoropolymer Functionalization of Organ-on-Chip Platform Increases Detection Sensitivity for Cannabinoids. Biosensors 2023, 13, 779.
https://doi.org/10.3390/bios13080779
AMA Style
Tong Z, Esser L, Galettis P, Rudd D, Easton CD, Nilghaz A, Peng B, Zhu D, Thissen H, Martin JH,
et al. Fluoropolymer Functionalization of Organ-on-Chip Platform Increases Detection Sensitivity for Cannabinoids. Biosensors. 2023; 13(8):779.
https://doi.org/10.3390/bios13080779
Chicago/Turabian Style
Tong, Ziqiu, Lars Esser, Peter Galettis, David Rudd, Christopher D. Easton, Azadeh Nilghaz, Bo Peng, Douer Zhu, Helmut Thissen, Jennifer H. Martin,
and et al. 2023. "Fluoropolymer Functionalization of Organ-on-Chip Platform Increases Detection Sensitivity for Cannabinoids" Biosensors 13, no. 8: 779.
https://doi.org/10.3390/bios13080779
APA Style
Tong, Z., Esser, L., Galettis, P., Rudd, D., Easton, C. D., Nilghaz, A., Peng, B., Zhu, D., Thissen, H., Martin, J. H., & Voelcker, N. H.
(2023). Fluoropolymer Functionalization of Organ-on-Chip Platform Increases Detection Sensitivity for Cannabinoids. Biosensors, 13(8), 779.
https://doi.org/10.3390/bios13080779