Y. U. CEBECI Et Al. , "Synthesis of novel Schiff bases and azol-beta-lactam derivatives starting from morpholine and thiomorpholine and investigation of their antitubercular, antiurease activity, acethylcolinesterase inhibition effect and antioxidant capacity," BIOORGANIC CHEMISTRY , vol.88, 2019
CEBECI, Y. U. Et Al. 2019. Synthesis of novel Schiff bases and azol-beta-lactam derivatives starting from morpholine and thiomorpholine and investigation of their antitubercular, antiurease activity, acethylcolinesterase inhibition effect and antioxidant capacity. BIOORGANIC CHEMISTRY , vol.88 .
CEBECI, Y. U., BAYRAK, H., & ŞIRIN, Y., (2019). Synthesis of novel Schiff bases and azol-beta-lactam derivatives starting from morpholine and thiomorpholine and investigation of their antitubercular, antiurease activity, acethylcolinesterase inhibition effect and antioxidant capacity. BIOORGANIC CHEMISTRY , vol.88.
CEBECI, Yildiz, HACER BAYRAK, And Yakup ŞIRIN. "Synthesis of novel Schiff bases and azol-beta-lactam derivatives starting from morpholine and thiomorpholine and investigation of their antitubercular, antiurease activity, acethylcolinesterase inhibition effect and antioxidant capacity," BIOORGANIC CHEMISTRY , vol.88, 2019
CEBECI, Yildiz U. Et Al. "Synthesis of novel Schiff bases and azol-beta-lactam derivatives starting from morpholine and thiomorpholine and investigation of their antitubercular, antiurease activity, acethylcolinesterase inhibition effect and antioxidant capacity." BIOORGANIC CHEMISTRY , vol.88, 2019
CEBECI, Y. U. BAYRAK, H. And ŞIRIN, Y. (2019) . "Synthesis of novel Schiff bases and azol-beta-lactam derivatives starting from morpholine and thiomorpholine and investigation of their antitubercular, antiurease activity, acethylcolinesterase inhibition effect and antioxidant capacity." BIOORGANIC CHEMISTRY , vol.88.
@article{article, author={Yildiz Uygun CEBECI Et Al. }, title={Synthesis of novel Schiff bases and azol-beta-lactam derivatives starting from morpholine and thiomorpholine and investigation of their antitubercular, antiurease activity, acethylcolinesterase inhibition effect and antioxidant capacity}, journal={BIOORGANIC CHEMISTRY}, year=2019}