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Russian scientists have increased the efficiency of perovskite solar cells
The research team of NUST MISIS together with Italian colleagues presented an improved version of solar cells based on perovskites. In the course of the study, scientists have identified additives (modifiers) that, without significant costs and complication of technical processes, increase the efficiency of the panels and improve the stability of the power output.
Image source: NUST MISIS
Perovskite is considered one of the most promising materials for solar panels of the future. On its basis, it is possible to produce the thinnest multilayer solar cells that can be applied even to window panes, even to architectural elements of any curvature. It is important to note, however, that perovskite-based panels can be inkjet-printed, avoiding the use of expensive vacuum systems and other complex industrial equipment.
To increase the efficiency of perovskite solar cells, the researchers mixed the so-called MXenes into the working solution for applying films. Maxenes are the thinnest (actually two-dimensional) titanium carbides with high electrical conductivity. Maxenes are produced by etching and peeling atomically thin layers of pre-applied aluminum onto layered hexagonal carbides and nitrides. Their production is pretty straightforward.
The photocells created on the basis of the proposed composition showed improved characteristics with a power conversion efficiency exceeding 19%, which is 2% more than the power of analogs. The proposed approach can be easily scaled to the format of modules and large-area panels, since doping with MXenes does not change the production chain and is carried out only at the initial stage of creating solutions for application.
Image source: NUST MISIS
“In this work, we demonstrate the useful role of MXenes doping both for the photoactive layer and for the electron transfer layer in the transport layers of fullerenes of perovskite solar cells based on nickel oxide,” said the co-author of the study, an employee of the NUST MISIS laboratory of promising solar energy, postgraduate student Anastasia Yakusheva. “The addition of makenes makes it possible, on the one hand, to easily adjust the alignment of energy levels at the perovskite / fullerene interface, and, on the other hand, to control the concentration of defects in the cell structure, which, in turn, improves the collection of photocurrent”.