Design of SrTiO3-based catalysts for photocatalytic CO2 reduction

Author:

Boga Bíborka12,Moustakas Nikolaos G.1,Han Yunyan13,Jiao Haijun1ORCID,Kreyenschulte Carsten1ORCID,Naliwajko Pawel1,Duong Thi Thanh Hoa1,Ding Shuoping1ORCID,Ngo Anh Binh1,Hezam Abdo4,Peppel Tim1ORCID,Cristea Vasile-Mircea2ORCID,Steinfeldt Norbert1ORCID,Strunk Jennifer14ORCID

Affiliation:

1. Leibniz Institute for Catalysis e.V. (LIKAT), Albert Einstein St., 29.A, Rostock, 18059, Germany

2. Faculty of Chemistry and Chemical Engineering, Babes-Bolyai University, Arany Janos St, 11, Cluj-Napoca, 400028, Romania

3. Shaanxi Key Laboratory of Phytochemistry, College of Chemistry & Chemical Engineering, Baoji University of Arts and Sciences, Baoji 721013, China

4. Industrielle Chemie und Heterogene Katalyse, Technical University of Munich (TUM), Lichtenberg St, 4, Munich, 85745, Germany

Abstract

Photocatalytic CO2 reduction was studied over SrTiO3-based catalysts in a high-purity gas-phase photoreactor. Depending on the catalyst composition different main products were obtained.

Funder

Deutsche Bundesstiftung Umwelt

Publisher

Royal Society of Chemistry (RSC)

Reference85 articles.

1. NASA , Global Climate Change , https://climate.nasa.gov/vital-signs/carbon-dioxide/ (last accessed on 05.02.2024)

2. World Energy Outlook 2022 , 2022 , pp. 233–236 , https://iea.blob.core.windows.net/assets/7e42db90-d8ea-459d-be1e-1256acd11330/WorldEnergyOutlook2022.pdf

3. Perovskite, the Chameleon CO2 Photocatalyst

4. Photocatalytic CO2 reduction over SrTiO3: Correlation between surface structure and activity

5. Improved charge separation and surface activation via boron-doped layered polyhedron SrTiO3 for co-catalyst free photocatalytic CO2 conversion

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