Research Teams

  • We achieved high CO2 electroreduction rate by periodically infusing electrolyte solutions with the gas stream to the cathode of water anolyte fed CO2 electrolyzer cells. Our results and the conclusions derived were published in Nature Energy, one of the most important scientific journals of the field

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  • We designed and produced zero-gap CO2 electrolyzer cells with 8-100 cm2 active surface area. We reported for the first time an electrolyzer cell design can be operated as multi-layer electrolyzer stack, hence increasing the conversion rate and/or conversion ratio of CO2.

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  • 100 quality publications in the field of hydrogen production, carbon dioxide activation, flue gas treatment. In successful domestic projects, technologies implemented with industry can be connected to the group. The development of high-efficiency catalysts for the production of fuel from carbon dioxide, the development of flue gas treatment catalysts and the “magic bricks” can also be linked to the group.

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  • The research group studies a wide variety of social aspects connected to green technologies with the main focus on economics and law. As it seems, assigning social science topics to technical and natural science innovations is more and more important from the point of view of their successful spread.

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  • The research group studies the light induced processes in semiconductor materials. We develop and implement in situ methods to investigate the photoelectrochemical activity, and charge carrier dynamics of semiconductors. We prepare novel hybrid materials and employ these in our self-constructed photoelectrochemical cells to generate solar fuels.

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  • We study the synthesis, characterization, and possible applications of porous structures composed of fibrous or lamellar components. The resulting materials have high porosity and surface area, and they can find application in e.g. batteries, filters, masks, environmental remediation, sensors, and catalyst supports.

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  • The primary focus of the research group is the preparation and investigation of low dimensional (0D, 1D and 2D) materials, showing promising physical and chemical properties unprecedented in the bulk phase. The efforts of research group are devoted to the investigation of the elementary steps of surface reactions and processes, which have a significant role in practically applicable nanotechnological processes. 

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