H. Çelik Kazıcı Et Al. , "A comprehensive study of hydrogen production from ammonia borane via PdCoAg/AC nanoparticles and anodic current in alkaline medium: experimental design with response surface methodology," Frontiers in Energy , vol.14, no.3, pp.578-589, 2020
Çelik Kazıcı, H. Et Al. 2020. A comprehensive study of hydrogen production from ammonia borane via PdCoAg/AC nanoparticles and anodic current in alkaline medium: experimental design with response surface methodology. Frontiers in Energy , vol.14, no.3 , 578-589.
Çelik Kazıcı, H., Yılmaz, Ş., Şahan, T., Yildiz, F., Er, Ö. F., & Kivrak, H., (2020). A comprehensive study of hydrogen production from ammonia borane via PdCoAg/AC nanoparticles and anodic current in alkaline medium: experimental design with response surface methodology. Frontiers in Energy , vol.14, no.3, 578-589.
Çelik Kazıcı, Hilal Et Al. "A comprehensive study of hydrogen production from ammonia borane via PdCoAg/AC nanoparticles and anodic current in alkaline medium: experimental design with response surface methodology," Frontiers in Energy , vol.14, no.3, 578-589, 2020
Çelik Kazıcı, Hilal Ç. Et Al. "A comprehensive study of hydrogen production from ammonia borane via PdCoAg/AC nanoparticles and anodic current in alkaline medium: experimental design with response surface methodology." Frontiers in Energy , vol.14, no.3, pp.578-589, 2020
Çelik Kazıcı, H. Et Al. (2020) . "A comprehensive study of hydrogen production from ammonia borane via PdCoAg/AC nanoparticles and anodic current in alkaline medium: experimental design with response surface methodology." Frontiers in Energy , vol.14, no.3, pp.578-589.
@article{article, author={Hilal Çelik Kazıcı Et Al. }, title={A comprehensive study of hydrogen production from ammonia borane via PdCoAg/AC nanoparticles and anodic current in alkaline medium: experimental design with response surface methodology}, journal={Frontiers in Energy}, year=2020, pages={578-589} }