Medina-Juárez, O.; García-Sánchez, M.Á.; Arellano-Sánchez, U.; Kornhauser-Straus, I.; Rojas-González, F.
Optimal Surface Amino-Functionalization Following Thermo-Alkaline Treatment of Nanostructured Silica Adsorbents for Enhanced CO2 Adsorption. Materials 2016, 9, 898.
https://doi.org/10.3390/ma9110898
AMA Style
Medina-Juárez O, García-Sánchez MÁ, Arellano-Sánchez U, Kornhauser-Straus I, Rojas-González F.
Optimal Surface Amino-Functionalization Following Thermo-Alkaline Treatment of Nanostructured Silica Adsorbents for Enhanced CO2 Adsorption. Materials. 2016; 9(11):898.
https://doi.org/10.3390/ma9110898
Chicago/Turabian Style
Medina-Juárez, Obdulia, Miguel Ángel García-Sánchez, Ulises Arellano-Sánchez, Isaac Kornhauser-Straus, and Fernando Rojas-González.
2016. "Optimal Surface Amino-Functionalization Following Thermo-Alkaline Treatment of Nanostructured Silica Adsorbents for Enhanced CO2 Adsorption" Materials 9, no. 11: 898.
https://doi.org/10.3390/ma9110898
APA Style
Medina-Juárez, O., García-Sánchez, M. Á., Arellano-Sánchez, U., Kornhauser-Straus, I., & Rojas-González, F.
(2016). Optimal Surface Amino-Functionalization Following Thermo-Alkaline Treatment of Nanostructured Silica Adsorbents for Enhanced CO2 Adsorption. Materials, 9(11), 898.
https://doi.org/10.3390/ma9110898