E. Arslan Et Al. , "Hydroxyl radical-mediated degradation of salicylic acid and methyl paraben: an experimental and computational approach to assess the reaction mechanisms," ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH , vol.26, no.32, pp.33125-33134, 2019
Arslan, E. Et Al. 2019. Hydroxyl radical-mediated degradation of salicylic acid and methyl paraben: an experimental and computational approach to assess the reaction mechanisms. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH , vol.26, no.32 , 33125-33134.
Arslan, E., Hekimoglu, B., Cinar, S. A., Ince, N., & Aviyente, V., (2019). Hydroxyl radical-mediated degradation of salicylic acid and methyl paraben: an experimental and computational approach to assess the reaction mechanisms. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH , vol.26, no.32, 33125-33134.
Arslan, Evrim Et Al. "Hydroxyl radical-mediated degradation of salicylic acid and methyl paraben: an experimental and computational approach to assess the reaction mechanisms," ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH , vol.26, no.32, 33125-33134, 2019
Arslan, Evrim Et Al. "Hydroxyl radical-mediated degradation of salicylic acid and methyl paraben: an experimental and computational approach to assess the reaction mechanisms." ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH , vol.26, no.32, pp.33125-33134, 2019
Arslan, E. Et Al. (2019) . "Hydroxyl radical-mediated degradation of salicylic acid and methyl paraben: an experimental and computational approach to assess the reaction mechanisms." ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH , vol.26, no.32, pp.33125-33134.
@article{article, author={Evrim Arslan Et Al. }, title={Hydroxyl radical-mediated degradation of salicylic acid and methyl paraben: an experimental and computational approach to assess the reaction mechanisms}, journal={ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH}, year=2019, pages={33125-33134} }