6533b834fe1ef96bd129d6ce
RESEARCH PRODUCT
Electro-catalytic and photo-catalytic reformation of CO 2 –reactions and efficiencies processes (Review)
G CikvaidzeL GrinbergaJ KleperisJ KlavinsI LukosevicsJ. HodakovskaA KnoksP Lesnicenokssubject
Materials scienceQuantum yieldNanotechnology02 engineering and technologyReuse010402 general chemistry021001 nanoscience & nanotechnologyElectrocatalyst7. Clean energy01 natural sciencesRedox0104 chemical sciencesCatalysisPhotocatalysis:NATURAL SCIENCES:Physics [Research Subject Categories]Chemical stabilityCharge carrier0210 nano-technologydescription
Energy harvesting with lowest environmental impact is one of key elements for cleaner future. Photocatalytic as well as electrocatalytic CO2 reformation processes are considered as prominent methods. Thus, extensive research of CO2 reformation is being done to find the right materials that holds crucial qualities. For photocatalysis that includes pronounced separation of light-generated opposite sign charge carriers, sensitivity to visible light, high quantum yield. In electrocatalysis high CO2 adsorption, chemical stability, multielectron reaction catalysts are necessary. Additionally, materials participating in the reaction process must be provided with charge carriers at proper reduction and oxidation potentials. To meet the set goal of lowering environmental impact and lower CO2 amounts exhausted into the atmosphere by human activities, it is necessary to find right technology for capturing, storing, and reusing carbon dioxide. Various technologies and materials in different levels of readiness are available and under development, such as CuO loaded TiO2 nanotubes for photocatalytic reformation or electrocatalytic reduction on copper. Not only the proof of concept is necessary but estimation and more importantly determination of the efficiency of both electro and photo catalytic reformation of CO2. In this work review of reactions and efficiency of both processes based on existing established technological methods is done.
year | journal | country | edition | language |
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2019-03-25 | IOP Conference Series: Materials Science and Engineering |