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    <title>Raw Data for Azetidinium Lead Iodide for Perovskite Solar Cells</title>
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      <item>CG0020</item>
      <item>ED0070</item>
      <item>ED0100</item>
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    <divisions>
      <item>dept_chem</item>
      <item>dept_physics</item>
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    <abstract>Here we prepare azetidinium lead iodide for the first time. Azetidinium lead iodide is a stable, bright orange material which does not appear to form a 3D or a 2D perovskite. It was successfully used as the absorber layer in solar cells. We also show that it is possible to make mixed cation devices by adding the azetidinium cation to methylammonium lead iodide. Mixed azetidinium-methylammonium cells show improved performance and reduced hysteresis compared to methylammonium lead iodide cells.

This dataset includes all structural and electrochemical raw data, including thin film XRD, UV/Vis, Cyclic Voltammetry and Mott Schottky measurements. It also includes the main parameters (Efficiency, Open Circuit Voltage, Short Circuit Current Density, Fill Factor) for all those made. The raw data includes JV curve data of the best pixel from each set, a stabilised efficiency measurement for the  MAPI, A1 and A2 cell and an EQE measurement of the best overall pixel.</abstract>
    <date>2018-01-23</date>
    <publisher>University of Bath</publisher>
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        <project_name>PhD Studentship</project_name>
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      <item>
        <funder_name>Engineering and Physical Sciences Research Council</funder_name>
        <funder_id>https://doi.org/10.13039/501100000266</funder_id>
        <grant_id>EP/L01551X/1</grant_id>
        <project_name>EPSRC Centre for Doctoral Training in New and Sustainable Photovoltaics</project_name>
      </item>
      <item>
        <funder_name>Engineering and Physical Sciences Research Council</funder_name>
        <funder_id>https://doi.org/10.13039/501100000266</funder_id>
        <grant_id>EP/L016354/1</grant_id>
        <project_name>EPSRC Centre for Doctoral Training in Sustainable Chemical Technologies</project_name>
      </item>
      <item>
        <funder_name>Engineering and Physical Sciences Research Council</funder_name>
        <funder_id>https://doi.org/10.13039/501100000266</funder_id>
        <grant_id>EP/K004956/1</grant_id>
        <project_name>Applying Long-Lived Metastable States in Switchable Functionality via Kinetic Control of Molecular Assembly - a Programme in Functional Materials</project_name>
      </item>
      <item>
        <funder_name>Engineering and Physical Sciences Research Council</funder_name>
        <funder_id>https://doi.org/10.13039/501100000266</funder_id>
        <grant_id>EP/H026304/1</grant_id>
        <project_name>Hybrid Materials for Enzymatic Reductions of Carbon Dioxide</project_name>
      </item>
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        <funder_name>Seventh Framework Programme</funder_name>
        <funder_id>https://doi.org/10.13039/100011102</funder_id>
        <grant_id>316494</grant_id>
        <project_name>Dye Sensitized Solar Cells with Enhanced Stability (Destiny)</project_name>
      </item>
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        <funder_name>Horizon 2020 Framework Programme</funder_name>
        <funder_id>https://doi.org/10.13039/100010661</funder_id>
        <grant_id>676629</grant_id>
        <project_name>EOCOE - Energy oriented Centre of Excellence for computer</project_name>
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    </funding>
    <collection_method>For full details of how the data was collected, please see the corresponding paper, available from https://doi.org/10.1039/C7TA07545F.</collection_method>
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