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High Efficiency and High Open Circuit Voltage in Quasi 2D Perovskite Based Solar Cells

机译:准2D钙钛矿基太阳能电池中的高效率和高开路电压

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摘要

An important property of hybrid layered perovskite is the possibility to reduce its dimensionality to provide wider band gap and better stability. In this work, 2D perovskite of the structure (PEA) 2(MA) n-1PbnBr3n+1 has been sensitized, where PEA is phenyl ethyl-ammonium, MA is methyl-ammonium, and using only bromide as the halide. The number of the perovskite layers has been varied (n) from n = 1 through n = infinity. Optical and physical characterization verify the layered structure and the increase in the band gap. The photovoltaic performance shows higher open circuit voltage (V-oc) for the quasi 2D perovskite (i.e., n = 40, 50, 60) compared to the 3D perovskite. Voc of 1.3 V without hole transport material (HTM) and Voc of 1.46 V using HTM have been demonstrated, with corresponding efficiency of 6.3% and 8.5%, among the highest reported. The lower mobility and transport in the quasi 2D perovskites have been proved effective to gain high Voc with high efficiency, further supported by ab initio calculations and charge extraction measurements. Bromide is the only halide used in these quasi 2D perovskites, as mixing halides have recently revealed instability of the perovskite structure. These quasi 2D materials are promising candidates for use in optoelectronic applications that simultaneously require high voltage and high efficiency.
机译:杂化层状钙钛矿的重要特性是可以减小其尺寸以提供更宽的带隙和更好的稳定性。在这项工作中,已经敏化了结构(PEA)2(MA)n-1PbnBr3n + 1的2维钙钛矿,其中PEA为苯乙基铵,MA为甲基铵,仅使用溴化物作为卤化物。钙钛矿层的数量从n = 1到n =无穷大变化(n)。光学和物理表征验证了层状结构和带隙的增加。与3D钙钛矿相比,准2D钙钛矿的光伏性能表现出更高的开路电压(V-oc)(即n = 40、50、60)。已经证明,在没有空穴传输材料(HTM)的情况下,Voc为1.3 V,在使用HTM的情况下,Voc为1.46 V,相应的效率分别为6.3%和8.5%,是最高的。准2D钙钛矿中较低的迁移率和迁移率已被证明可有效地高效获得高Voc,并且从头算和电荷提取测量值进一步证明了这一点。溴化物是这些准2D钙钛矿中唯一使用的卤化物,因为混合卤化物最近显示出钙钛矿结构的不稳定性。这些准2D材料有望用于同时需要高电压和高效率的光电应用中。

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  • 来源
    《Advanced Functional Materials》 |2017年第5期|1604733.1-1604733.7|共7页
  • 作者单位

    Hebrew Univ Jerusalem, Inst Chem, Casali Ctr Appl Chem, Jerusalem, Israel;

    Polish Acad Sci, Inst Phys, Aleja Lotnikow 32-46, PL-02668 Warsaw, Poland;

    Hebrew Univ Jerusalem, Inst Chem, Casali Ctr Appl Chem, Jerusalem, Israel;

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