INVESTIGADORES
SAMBETH Jorge Enrique
artículos
Título:
Theoretical analysis of Polyethylene terephthalate (PET) adsorption on Co and Mn-doped ZnO (000-1)
Autor/es:
GALLEGOS, MARÍA V; WALTER G. REIMERS; ROMINA LUNA; DAMONTE LAURA; JORGE ENRIQUE SAMBETH; MARCHETTI JORGE; JUAN, ALFREDO
Revista:
molecular catalysis
Editorial:
elsevier
Referencias:
Año: 2022 vol. 531 p. 112688 - 112697
ISSN:
2468-8231
Resumen:
We have studied, using DFT calculations, the adsorption of Polyethylene Terephthalate (PET) on the pristine anddoped polar ZnO (000-1)-O surfaces. The considered dopants are Cobalt and Manganese. The obtained results,before PET adsorption, show that the incorporation of Co and Mn in the ZnO surface produces oxygen passivation,a blueshift, and an important increase of magnetic moment. These facts are important to the control anddevelopment of devices in several areas such as catalysis and spintronic. For PET adsorption on pristine ZnO(000-1)-O surface is observed the formation of two hydroxyl and a carbonyl groups. Moreover, the magneticmoment of the pristine ZnO surface is zero after PET adsorption. This behavior is attributed to the reconstructionand passivation due to H atoms adsorbed on the surface. The PET adsorption produces a blueshift when it isadsorbed on pristine and doped ZnO (000-1)-O. This adsorption produces a decrease (increase) of the magneticmoment value for Co (Mn) doped surface, from 16.8 μB to 15.6 μB (6.2 μB to 16.6μB). Finally, the computedadsorption energy for both doped surfaces shows that the adsorption is energetically favorable and the process isexothermic. These values are -4.8 eV and -9.8 eV for Co and Mn-doped surfaces, respectively. Then we canconclude that PET adsorption is better in Mn-doped than Co-doped ZnO (000-1)-O.