de Souza, R.F.; de Almeida, R.R.R.; Omori, E.K.; de Souza, R.T.; Lenzi, E.K.; Evangelista, L.R.; Zola, R.S.
Role of the Number of Adsorption Sites and Adsorption Dynamics of Diffusing Particles in a Confined Liquid with Langmuir Kinetics. Physchem 2023, 3, 1-12.
https://doi.org/10.3390/physchem3010001
AMA Style
de Souza RF, de Almeida RRR, Omori EK, de Souza RT, Lenzi EK, Evangelista LR, Zola RS.
Role of the Number of Adsorption Sites and Adsorption Dynamics of Diffusing Particles in a Confined Liquid with Langmuir Kinetics. Physchem. 2023; 3(1):1-12.
https://doi.org/10.3390/physchem3010001
Chicago/Turabian Style
de Souza, Renato F., Roberta R. Ribeiro de Almeida, Eric K. Omori, Rodolfo T. de Souza, Ervin K. Lenzi, Luiz R. Evangelista, and Rafael S. Zola.
2023. "Role of the Number of Adsorption Sites and Adsorption Dynamics of Diffusing Particles in a Confined Liquid with Langmuir Kinetics" Physchem 3, no. 1: 1-12.
https://doi.org/10.3390/physchem3010001
APA Style
de Souza, R. F., de Almeida, R. R. R., Omori, E. K., de Souza, R. T., Lenzi, E. K., Evangelista, L. R., & Zola, R. S.
(2023). Role of the Number of Adsorption Sites and Adsorption Dynamics of Diffusing Particles in a Confined Liquid with Langmuir Kinetics. Physchem, 3(1), 1-12.
https://doi.org/10.3390/physchem3010001