M. Qneibi Et Al. , "Ortho versus Meta Chlorophenyl-2,3-Benzodiazepine Analogues: Synthesis, Molecular Modeling, and Biological Activity as AMPAR Antagonists," ACS OMEGA , vol.5, no.7, pp.3588-3595, 2020
Qneibi, M. Et Al. 2020. Ortho versus Meta Chlorophenyl-2,3-Benzodiazepine Analogues: Synthesis, Molecular Modeling, and Biological Activity as AMPAR Antagonists. ACS OMEGA , vol.5, no.7 , 3588-3595.
Qneibi, M., Jaradat, N., Hawash, M., OLĞAÇ, A., & Emwas, N., (2020). Ortho versus Meta Chlorophenyl-2,3-Benzodiazepine Analogues: Synthesis, Molecular Modeling, and Biological Activity as AMPAR Antagonists. ACS OMEGA , vol.5, no.7, 3588-3595.
Qneibi, Mohammad Et Al. "Ortho versus Meta Chlorophenyl-2,3-Benzodiazepine Analogues: Synthesis, Molecular Modeling, and Biological Activity as AMPAR Antagonists," ACS OMEGA , vol.5, no.7, 3588-3595, 2020
Qneibi, Mohammad Et Al. "Ortho versus Meta Chlorophenyl-2,3-Benzodiazepine Analogues: Synthesis, Molecular Modeling, and Biological Activity as AMPAR Antagonists." ACS OMEGA , vol.5, no.7, pp.3588-3595, 2020
Qneibi, M. Et Al. (2020) . "Ortho versus Meta Chlorophenyl-2,3-Benzodiazepine Analogues: Synthesis, Molecular Modeling, and Biological Activity as AMPAR Antagonists." ACS OMEGA , vol.5, no.7, pp.3588-3595.
@article{article, author={Mohammad Qneibi Et Al. }, title={Ortho versus Meta Chlorophenyl-2,3-Benzodiazepine Analogues: Synthesis, Molecular Modeling, and Biological Activity as AMPAR Antagonists}, journal={ACS OMEGA}, year=2020, pages={3588-3595} }