Graphene films decorated with TiO2 grown by atomic layer deposition: Characterization and photocatalytic activity study under UV–visible light

2019 ◽  
Vol 470 ◽  
pp. 484-495 ◽  
Author(s):  
Francesca Marchetti ◽  
Nadhira Laidani ◽  
Marina Scarpa ◽  
Gloria Gottardi ◽  
Enrico Moser
RSC Advances ◽  
2020 ◽  
Vol 10 (63) ◽  
pp. 38233-38243
Author(s):  
Olga M. Ishchenko ◽  
Guillaume Lamblin ◽  
Jérôme Guillot ◽  
Ingrid C. Infante ◽  
Maël Guennou ◽  
...  

Mesoporous TiO2 films with enhanced photocatalytic activity in both UV and visible wavelength ranges were developed through a non-conventional atomic layer deposition (ALD) process at room temperature.


Author(s):  
Sungho Park ◽  
Byung Jun Kim ◽  
Tae Yeon Kim ◽  
Eui Young Jung ◽  
Kyu-Myung Lee ◽  
...  

We have developed a visible-light phototransistor with excellent photodetection characteristics and stability via atomic layer deposition (ALD) to add a thin layer of aluminum oxide (Al2O3) to quantum dot (QD)/zinc oxide (ZnO) films.


Nano Letters ◽  
2013 ◽  
Vol 13 (7) ◽  
pp. 3352-3357 ◽  
Author(s):  
Carl Hägglund ◽  
Gabriel Zeltzer ◽  
Ricardo Ruiz ◽  
Isabell Thomann ◽  
Han-Bo-Ram Lee ◽  
...  

Catalysts ◽  
2020 ◽  
Vol 10 (4) ◽  
pp. 450 ◽  
Author(s):  
Miguel Martín-Sómer ◽  
Dominik Benz ◽  
J. Ruud van Ommen ◽  
Javier Marugán

This work presents the evaluation of the photocatalytic activity of P25 TiO2 particles, coated with SiO2, using atomic layer deposition (ALD) for the photocatalytic removal of methylene blue, oxidation of methanol and inactivation of Escherichia coli bacteria in water and its comparative evaluation with bare P25 TiO2. Two different reactor configurations were used, a slurry reactor with the catalyst in suspension, and a structured reactor with the catalyst immobilized in macroporous foams, that enables the long-term operation of the process in continuous mode, without the necessity of separation of the particles. The results show that the incorporation of SiO2 decreases the efficiency of the photocatalytic oxidation of methanol, whereas a significant improvement in the removal of methylene blue is achieved, and no significant changes are observed in the photocatalytic inactivation of bacteria. Adsorption tests showed that the improvements, observed in the removal of methylene blue by the incorporation of SiO2, was mainly due to an increase in its adsorption. The improvement in the adsorption step as part of the global photocatalytic process led to a significant increase in its removal efficiency. Similar conclusions were reached for bacterial inactivation where the loss of photocatalytic efficiency, suggested by the methanol oxidation tests, was counteracted with a better adherence of bacteria to the catalyst that improved its elimination. With respect to the use of macroporous foams as support, a reduction in the photocatalytic efficiency is observed, as expected from the decrease in the available surface area. Nevertheless, this lower efficiency can be counteracted by the operational improvement derived from the easy catalyst reuse.


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