The scientist’s investigation covers issues in Photovoltaic system, Organic solar cell, Optoelectronics, Nanotechnology and PEDOT:PSS. Her study in the field of Photovoltaics is also linked to topics like Inter-laboratory and Degradation. Yulia Galagan is studying Polymer solar cell, which is a component of Optoelectronics.
As a part of the same scientific family, Yulia Galagan mostly works in the field of Polymer solar cell, focusing on Roll-to-roll processing and, on occasion, Photoactive layer and Solar cell. Her studies in Nanotechnology integrate themes in fields like Electrical conductor and Electronics. Her studies deal with areas such as Anode and Indium tin oxide as well as PEDOT:PSS.
Yulia Galagan focuses on Optoelectronics, Organic solar cell, Photovoltaic system, Perovskite and Nanotechnology. Her Optoelectronics study incorporates themes from Layer, Indium tin oxide, Coating and Light intensity. Her work deals with themes such as PEDOT:PSS, Sheet resistance, Polymer solar cell and Current, which intersect with Organic solar cell.
As a part of the same scientific study, Yulia Galagan usually deals with the Photovoltaic system, concentrating on Solar cell and frequently concerns with Engineering physics and Solar power. Her research integrates issues of Photovoltaics, Roll-to-roll processing and Energy conversion efficiency in her study of Perovskite. Her work in Nanotechnology addresses issues such as Electronics, which are connected to fields such as Solar energy.
Yulia Galagan mainly investigates Perovskite, Optoelectronics, Photovoltaics, Chemical engineering and Photovoltaic system. Her Perovskite research incorporates themes from Roll-to-roll processing, Solar cell and Engineering physics. When carried out as part of a general Optoelectronics research project, her work on Polymer solar cell and Heterojunction is frequently linked to work in Stack, therefore connecting diverse disciplines of study.
Her Chemical engineering research incorporates elements of Substrate, Low temperature deposition, Indium tin oxide and Polyethylene naphthalate. The various areas that Yulia Galagan examines in her Photovoltaic system study include Computer hardware and Coating. Her Nanotechnology study frequently intersects with other fields, such as Organic solar cell.
Yulia Galagan spends much of her time researching Perovskite, Optoelectronics, Photovoltaics, Energy conversion efficiency and Roll-to-roll processing. Her Perovskite research includes elements of Layer, Photochemistry, Photocurrent and Trihalide. Her work in the fields of Optoelectronics, such as Common emitter, intersects with other areas such as Visible light communication.
Yulia Galagan combines subjects such as Photodetector and Perovskite solar cell with her study of Photovoltaics. Her Roll-to-roll processing research is multidisciplinary, incorporating elements of Nanoparticle, Thin film, Indium tin oxide, Polyethylene naphthalate and Coating. The Coating study combines topics in areas such as FOIL method, Die and Substrate.
This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.
ITO-free flexible organic solar cells with printed current collecting grids
Yulia Galagan;Jan-Eric J.M. Rubingh;Ronn Andriessen;Chia-Chen Fan.
Solar Energy Materials and Solar Cells (2011)
High efficiency, fully inkjet printed organic solar cells with freedom of design
T. M. Eggenhuisen;Y. Galagan;A. F. K. V. Biezemans;A. F. K. V. Biezemans;T. M. W. L. Slaats.
Journal of Materials Chemistry (2015)
The OE-A OPV demonstrator anno domini 2011
Frederik C. Krebs;Jan Fyenbo;David M. Tanenbaum;Suren A. Gevorgyan.
Energy and Environmental Science (2011)
Technology development for roll-to-roll production of organic photovoltaics
Yulia Galagan;Ike G. de Vries;Arjan P. Langen;Ronn Andriessen.
Chemical Engineering and Processing (2011)
Consensus statement for stability assessment and reporting for perovskite photovoltaics based on ISOS procedures
Mark V. Khenkin;Mark V. Khenkin;Eugene A. Katz;Antonio Abate;Giorgio Bardizza.
Nature Energy (2020)
Investigation of the degradation mechanisms of a variety of organic photovoltaic devices by combination of imaging techniques—the ISOS-3 inter-laboratory collaboration
Roland Rösch;David Tanenbaum;David Tanenbaum;Mikkel Jørgensen;Marco Seeland.
Energy and Environmental Science (2012)
An inter-laboratory stability study of roll-to-roll coated flexible polymer solar modules
Suren Gevorgyan;Andrew James Medford;Eva Bundgaard;Subarna B. Sapkota.
Solar Energy Materials and Solar Cells (2011)
Comparative indoor and outdoor degradation of organic photovoltaic cells via inter-laboratory collaboration
Charles Owens;Gretta Mae Ferguson;Martin Hermenau;Eszter Voroshazi.
photovoltaic specialists conference (2015)
Current Collecting Grids for ITO-Free Solar Cells
Yulia Galagan;Birger Zimmermann;Erica W.C. Coenen;Mikkel Jørgensen.
Advanced Energy Materials (2012)
Evaluation of ink-jet printed current collecting grids and busbars for ITO-free organic solar cells
J.M. Kroon;S.C. Veenstra;R. Andriessen;Y. Galagan.
Solar Energy Materials and Solar Cells (2012)
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