A. Urcuk Et Al. , "Highly sensitive and disposable electrochemical nano sensor for simultaneous analysis of caffeic acid and uric acid based on halloysite nanotubes and magnetite nanoparticles," MICROCHEMICAL JOURNAL , vol.181, 2022
Urcuk, A. Et Al. 2022. Highly sensitive and disposable electrochemical nano sensor for simultaneous analysis of caffeic acid and uric acid based on halloysite nanotubes and magnetite nanoparticles. MICROCHEMICAL JOURNAL , vol.181 .
Urcuk, A., Yildiz, C., ESKİKÖY BAYRAKTEPE, D., & YAZAN, Z., (2022). Highly sensitive and disposable electrochemical nano sensor for simultaneous analysis of caffeic acid and uric acid based on halloysite nanotubes and magnetite nanoparticles. MICROCHEMICAL JOURNAL , vol.181.
Urcuk, Ayca Et Al. "Highly sensitive and disposable electrochemical nano sensor for simultaneous analysis of caffeic acid and uric acid based on halloysite nanotubes and magnetite nanoparticles," MICROCHEMICAL JOURNAL , vol.181, 2022
Urcuk, Ayca Et Al. "Highly sensitive and disposable electrochemical nano sensor for simultaneous analysis of caffeic acid and uric acid based on halloysite nanotubes and magnetite nanoparticles." MICROCHEMICAL JOURNAL , vol.181, 2022
Urcuk, A. Et Al. (2022) . "Highly sensitive and disposable electrochemical nano sensor for simultaneous analysis of caffeic acid and uric acid based on halloysite nanotubes and magnetite nanoparticles." MICROCHEMICAL JOURNAL , vol.181.
@article{article, author={Ayca Urcuk Et Al. }, title={Highly sensitive and disposable electrochemical nano sensor for simultaneous analysis of caffeic acid and uric acid based on halloysite nanotubes and magnetite nanoparticles}, journal={MICROCHEMICAL JOURNAL}, year=2022}