首页> 中文期刊> 《天然气化学(英文版)》 >Energy level engineering of charge selective contact and halide perovskite by modulating band offset:Mechanistic insights

Energy level engineering of charge selective contact and halide perovskite by modulating band offset:Mechanistic insights

         

摘要

Mixed cation and anion based perovskites solar cells exhibited enhanced stability under outdoor conditions,however,it yielded limited power conversion efficiency when TiO_(2) and Spiro-OMeTAD were employed as electron and hole transport layer(ETL/HTL)respectively.The inevitable interfacial recombination of charge carriers at ETL/perovskite and perovskite/HTL interface diminished the efficiency in planar(n-i-p)perovskite solar cells.By employing computational approach for uni-dimensional device simulator,the effect of band offset on charge recombination at both interfaces was investigated.We noted that it acquired cliff structure when the conduction band minimum of the ETL was lower than that of the perovskite,and thus maximized interfacial recombination.However,if the conduction band minimum of ETL is higher than perovskite,a spike structure is formed,which improve the performance of solar cell.An optimum value of conduction band offset allows to reach performance of 25.21%,with an open circuit voltage(VOC)of 1231 mV,a current density JSC of 24.57 mA/cm^(2) and a fill factor of 83.28%.Additionally,we found that beyond the optimum offset value,large spike structure could decrease the performance.With an optimized energy level of Spiro-OMeTAD and the thickness of mixed-perovskite layer performance of 26.56% can be attained.Our results demonstrate a detailed understanding about the energy level tuning between the charge selective layers and perovskite and how the improvement in PV performance can be achieved by adjusting the energy level offset.

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  • 来源
    《天然气化学(英文版)》 |2021年第3期|822-829|共8页
  • 作者单位

    BCMaterials Basque Center for Materials Applications and Nanostructures Bld.Martina Casiano UPV/EHU Science Park Barrio Sarriena s/n 48940 Leioa Spain;

    Laboratory of Condensed Matter and Interdisciplinary Sciences Faculty of Sciences Mohammed V University Rabat Morocco;

    Laboratory of Condensed Matter and Interdisciplinary Sciences Faculty of Sciences Mohammed V University Rabat Morocco;

    BCMaterials Basque Center for Materials Applications and Nanostructures Bld.Martina Casiano UPV/EHU Science Park Barrio Sarriena s/n 48940 Leioa Spain;

    IKERBASQUE Basque Foundation for Science Bilbao 48013 Spain;

    BCMaterials Basque Center for Materials Applications and Nanostructures Bld.Martina Casiano UPV/EHU Science Park Barrio Sarriena s/n 48940 Leioa Spain;

    IKERBASQUE Basque Foundation for Science Bilbao 48013 Spain;

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  • 正文语种 eng
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