While perovskite solar cell (PSC) efficiencies are soaring at a laboratory scale, these are most commonly achieved with evaporated gold electrodes, which would present a significant expense in large-scale production. This can be remedied through the use of significantly cheaper carbon electrodes that, in contrast to metals, also do not migrate through the device. To this end, the present work investigates simple-to-prepare aluminum-supported carbon electrodes derived from commercially available, inexpensive materials that can be applied onto various hole-transporting materials and enable photovoltaic performances on par with those provided by gold electrodes. Successful integration of the new carbon-based electrode into flexible devices pro...
© 2017 Author(s). Cost-effective production of perovskite solar cells on an industrial scale require...
Carbon-based electrodes represent a promising approach to improve stability and up-scalability of pe...
High power conversion efficiencies (PCE), low energy payback time (EPBT), and low manufacturing cost...
While perovskite solar cell (PSC) efficiencies are soaring at a laboratory scale, these are most com...
High-performance lab-scale perovskite solar cells often have a precious metal as the top electrode. ...
Almost ten years after their first use in the photovoltaic (PV) field, perovskite solar cells (PSCs)...
Perovskite solar cells (PSCs) and modules are driving the energy revolution in the coming photovolta...
Scalable deposition processes at low temperature are urgently needed for the commercialization of pe...
Perovskite solar cells using carbon electrodes (C–PSCs) possess the advantageous features of low cos...
Perovskite solar cells are one of the most promising photovoltaic technology, presenting the fastest...
A simple yet effective method based on hot-pressing a free-standing carbon film onto adjacent hole t...
After more than 10 years of intensive optimization, perovskite solar cells (PSCs) have now reached t...
This is an open access article published under an ACS AuthorChoice License, which permits copying an...
Presently, carbon-based nanomaterials have shown tremendous potential for energy conversion applicat...
Carbon based Perovskite Solar cells (C–PSCs) have emerged as the most promising candidates for comme...
© 2017 Author(s). Cost-effective production of perovskite solar cells on an industrial scale require...
Carbon-based electrodes represent a promising approach to improve stability and up-scalability of pe...
High power conversion efficiencies (PCE), low energy payback time (EPBT), and low manufacturing cost...
While perovskite solar cell (PSC) efficiencies are soaring at a laboratory scale, these are most com...
High-performance lab-scale perovskite solar cells often have a precious metal as the top electrode. ...
Almost ten years after their first use in the photovoltaic (PV) field, perovskite solar cells (PSCs)...
Perovskite solar cells (PSCs) and modules are driving the energy revolution in the coming photovolta...
Scalable deposition processes at low temperature are urgently needed for the commercialization of pe...
Perovskite solar cells using carbon electrodes (C–PSCs) possess the advantageous features of low cos...
Perovskite solar cells are one of the most promising photovoltaic technology, presenting the fastest...
A simple yet effective method based on hot-pressing a free-standing carbon film onto adjacent hole t...
After more than 10 years of intensive optimization, perovskite solar cells (PSCs) have now reached t...
This is an open access article published under an ACS AuthorChoice License, which permits copying an...
Presently, carbon-based nanomaterials have shown tremendous potential for energy conversion applicat...
Carbon based Perovskite Solar cells (C–PSCs) have emerged as the most promising candidates for comme...
© 2017 Author(s). Cost-effective production of perovskite solar cells on an industrial scale require...
Carbon-based electrodes represent a promising approach to improve stability and up-scalability of pe...
High power conversion efficiencies (PCE), low energy payback time (EPBT), and low manufacturing cost...