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Photodehydrogenation of ethanol over cu2o/tio2 heterostructures

Authors :
Ministerio de Economía y Competitividad (España)
China Scholarship Council
Universidad Autónoma de Barcelona
Swiss National Science Foundation
European Commission
Xing, Congcong
Zhang, Yu
Liu, Yongpeng
Wang, Xiang
Li, Junshan
Martínez-Alanis, Paulina R.
Spadaro, Maria Chiara
Guardia, Pablo
Arbiol, Jordi
Llorca, Jordi
Cabot, Andreu
Ministerio de Economía y Competitividad (España)
China Scholarship Council
Universidad Autónoma de Barcelona
Swiss National Science Foundation
European Commission
Xing, Congcong
Zhang, Yu
Liu, Yongpeng
Wang, Xiang
Li, Junshan
Martínez-Alanis, Paulina R.
Spadaro, Maria Chiara
Guardia, Pablo
Arbiol, Jordi
Llorca, Jordi
Cabot, Andreu
Publication Year :
2021

Abstract

The photodehydrogenation of ethanol is a sustainable and potentially cost-effective strategy to produce hydrogen and acetaldehyde from renewable resources. The optimization of this process requires the use of highly active, stable and selective photocatalytic materials based on abundant elements and the proper adjustment of the reaction conditions, including temperature. In this work, CuO-TiO type-II heterojunctions with different CuO amounts are obtained by a one-pot hydrothermal method. The structural and chemical properties of the produced materials and their activity toward ethanol photodehydrogenation under UV and visible light illumination are evaluated. The CuO-TiO photocatalysts exhibit a high selectivity toward acetaldehyde production and up to tenfold higher hydrogen evolution rates compared to bare TiO . We further discern here the influence of temperature and visible light absorption on the photocatalytic performance. Our results point toward the combination of energy sources in thermo-photocatalytic reactors as an efficient strategy for solar energy conversion.

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1333181830
Document Type :
Electronic Resource