D. TÜRKMEN Et Al. , "An Alternative Approach for Bacterial Growth Control: Pseudomonas spp. Imprinted Polymer-Based Surface Plasmon Resonance Sensor," IEEE SENSORS JOURNAL , vol.22, no.4, pp.3001-3008, 2022
TÜRKMEN, D. Et Al. 2022. An Alternative Approach for Bacterial Growth Control: Pseudomonas spp. Imprinted Polymer-Based Surface Plasmon Resonance Sensor. IEEE SENSORS JOURNAL , vol.22, no.4 , 3001-3008.
TÜRKMEN, D., Yilmaz, T., Bakhshpour, M., & DENİZLİ, A., (2022). An Alternative Approach for Bacterial Growth Control: Pseudomonas spp. Imprinted Polymer-Based Surface Plasmon Resonance Sensor. IEEE SENSORS JOURNAL , vol.22, no.4, 3001-3008.
TÜRKMEN, DENİZ Et Al. "An Alternative Approach for Bacterial Growth Control: Pseudomonas spp. Imprinted Polymer-Based Surface Plasmon Resonance Sensor," IEEE SENSORS JOURNAL , vol.22, no.4, 3001-3008, 2022
TÜRKMEN, DENİZ Et Al. "An Alternative Approach for Bacterial Growth Control: Pseudomonas spp. Imprinted Polymer-Based Surface Plasmon Resonance Sensor." IEEE SENSORS JOURNAL , vol.22, no.4, pp.3001-3008, 2022
TÜRKMEN, D. Et Al. (2022) . "An Alternative Approach for Bacterial Growth Control: Pseudomonas spp. Imprinted Polymer-Based Surface Plasmon Resonance Sensor." IEEE SENSORS JOURNAL , vol.22, no.4, pp.3001-3008.
@article{article, author={DENİZ TÜRKMEN Et Al. }, title={An Alternative Approach for Bacterial Growth Control: Pseudomonas spp. Imprinted Polymer-Based Surface Plasmon Resonance Sensor}, journal={IEEE SENSORS JOURNAL}, year=2022, pages={3001-3008} }