A. Cetinkaya Et Al. , "Plant-based zinc nanoflowers assisted molecularly imprinted polymer for the design of an electrochemical sensor for selective determination of abrocitinib," MICROCHIMICA ACTA , vol.191, no.6, 2024
Cetinkaya, A. Et Al. 2024. Plant-based zinc nanoflowers assisted molecularly imprinted polymer for the design of an electrochemical sensor for selective determination of abrocitinib. MICROCHIMICA ACTA , vol.191, no.6 .
Cetinkaya, A., Yusufbeyoglu, S., Kaya, S. I., Kilic, A. B., Atici, E. B., & ÖZKAN, S. A., (2024). Plant-based zinc nanoflowers assisted molecularly imprinted polymer for the design of an electrochemical sensor for selective determination of abrocitinib. MICROCHIMICA ACTA , vol.191, no.6.
Cetinkaya, Ahmet Et Al. "Plant-based zinc nanoflowers assisted molecularly imprinted polymer for the design of an electrochemical sensor for selective determination of abrocitinib," MICROCHIMICA ACTA , vol.191, no.6, 2024
Cetinkaya, Ahmet Et Al. "Plant-based zinc nanoflowers assisted molecularly imprinted polymer for the design of an electrochemical sensor for selective determination of abrocitinib." MICROCHIMICA ACTA , vol.191, no.6, 2024
Cetinkaya, A. Et Al. (2024) . "Plant-based zinc nanoflowers assisted molecularly imprinted polymer for the design of an electrochemical sensor for selective determination of abrocitinib." MICROCHIMICA ACTA , vol.191, no.6.
@article{article, author={Ahmet Cetinkaya Et Al. }, title={Plant-based zinc nanoflowers assisted molecularly imprinted polymer for the design of an electrochemical sensor for selective determination of abrocitinib}, journal={MICROCHIMICA ACTA}, year=2024}