KAUST Team Reports 26.2% PCE For 4T Perovskite/silicon Tandems Enabled By IZRO Electrodes

May 21, 2019

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Source: Advanced Functional Materials


KAUST perovskite silicon tandems 26.2%

 

Parasitic absorption in transparent electrodes is one of the main roadblocks to enabling power conversion efficiencies (PCEs) for perovskitebased tandem solar cells beyond 30%. To reduce such losses and maximize light coupling, the broadband transparency of such electrodes should be improved, especially at the front of the device.

 

Improves NIR response in si/per tandems image

 

Erkan Aydin and coworkers from KAUST Photovoltaics Laboratory have recently shown the excellent properties of Zrdoped indium oxide (IZRO) transparent electrodes for such applications, with improved nearinfrared (NIR) response compared to conventional tindoped indium oxide (ITO) electrodes. Optimized IZRO films feature very high electron mobility (up to 77 cm2 V−1 s−1), enabling highly infrared transparent films with a very low sheet resistance (18 Ω −1 for annealed 100 nm films). For devices, this translates to a parasitic absorption of only 5% for IZRO within the solar spectrum (2502500 nm range), to be compared with 10% for commercial ITO.

 

Additionally, the team has reported 26.2% PCE for fourterminal perovskite/silicon tandem devices with an absolute 3.5 mA cm−2 shortcircuit current improvement in silicon bottom cells is obtained by replacing commercial ITO electrodes with IZRO.




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