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Search results for: PEROVSKITE SOLAR CELL

  • Zespół Fizyki Materii Molekularnej

    Główną tematyką badań Zespołu Fizyki Materii Molekularnej jest wyjaśnianie struktury i własności fizycznych układów molekularnych oraz hybrydowych (materiał organiczny / materiał nieorganiczny)

  • Zespół Fizyki Ciała Stałego

    Tematyka badawcza Katedry Fizyki Ciała Stałego obejmuje wytwarzanie i badanie materiałów dla energetyki (m.in. nanostruktury, sensory) o innowacyjnych właściwościach fizyko-chemicznych, tj: * kryształy, polikryształy, ceramika, szkło * materiały objętościowe, cienkie warstwy, nanomateriały * materiały metaliczne, półprzewodnikowe, nadprzewodnikowe, izolatory Tematyka badawcza obejmuje również badania symulacyjne i obliczeniowe...

  • Katedra Automatyki Napędu Elektrycznego i Konwersji Energii

    * nieliniowe sterowanie maszynami elektrycznymi * napędy elektryczne o sterowaniu bez czujnikowym * sterowanie przekształtnikami energoelektronicznymi, w tym przekształtnikami na średnie napięcia i przekształtnikami sieciowymi * energoelektroniczne układy przetwarzania energii w odnawialnych źródłach energii * projektowanie i badanie falowników i przetwornic * projektowanie układów sterowania mikroprocesorowego z wykorzystaniem...

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Search results for: PEROVSKITE SOLAR CELL

  • Impact of the trap–assisted recombination in the perovskite solar cells

    Publication

    - Year 2020

    To achieve the highest performance using perovskite solar cells it is necessary to understand all the dominant mechanisms which affect the operation of solar cell. Here, we have investigated the bulk and interface trap–assisted recombination processes in the solar cells with p–i–n architecture. These studies are based on the numerical and experimental methods to get better understanding of these physical processes. The following results...

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  • Light intensity analysis of photovoltaic parameters for perovskite solar cells

    Publication

    - ADVANCED MATERIALS - Year 2022

    The number of publications on perovskite solar cells (PSC) continues to grow exponentially. Although the efficiency of PSC is exceeded 25.5%, not every research laboratory can reproduce this result or even pass the border of 20%. Unfortunately, it is not always clear which dominating mechanism is responsible for the performance drop. Here, we develop a simple method of light intensity analysis of JV parameters allowing the understanding...

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  • Bias-Dependent Dynamics of Degradation and Recovery in Perovskite Solar Cells

    Publication
    • M. Prete
    • M. V. Khenkin
    • D. Głowienka
    • B. R. Patil
    • J. S. Lissau
    • I. Dogan
    • J. Hansen
    • T. Leißner
    • J. Fiutowski
    • H. Rubahn... and 6 others

    - ACS Applied Energy Materials - Year 2021

    Degradation of perovskite solar cells (PSCs) is often found to be partially or fully reversible when the cells are allowed to recover in the dark. Unlike the dynamics of degradation, knowledge about the dynamics of PSC cell recovery is very limited. Here, we demonstrate that the PSC recovery strongly depends on the electrical bias conditions during the light-induced degradation and that it can be manipulated by applying an external...

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  • Exploring the interfacial effects at the ETL/perovskite boundary in the semitransparent perovskite solar cells

    Publication

    - SOLAR ENERGY - Year 2023

    The recent focus has been made on the perovskite solar cells (PSCs) with an inverted configuration, where substantial improvements have been already achieved. However, the p–i–n structure needs a buffer layer for most of the configurations to modify the work-function of a deposited electrode. Additionally and very importantly, such a layer can also serve as a protective film that improves a stability of solar cells. Here, we study...

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  • Role of surface recombination in perovskite solar cells at the interface of HTL/CH3NH3PbI3

    Publication

    - Nano Energy - Year 2020

    In order to achieve the highest performance of organometal trihalide perovskite solar cells, it is required to recognize the dominant mechanisms which play a key role in a perovskite material. In the following studies, we have focused on the interfacial recombination between the hole transporting layer (HTL) and the perovskite CH3NH3PbI3 in solar cell devices with p–i–n architecture. It has been shown that Cu:NiOx : used as HTL...

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