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Denatured M13 Bacteriophage‐Templated Perovskite Solar Cells Exhibiting High Efficiency

机译:变性M13噬菌体模板钙钛矿太阳能电池表现出高效率

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摘要

The M13 bacteriophage, a nature‐inspired environmentally friendly biomaterial, is used as a perovskite crystal growth template and a grain boundary passivator in perovskite solar cells. The amino groups and carboxyl groups of amino acids on the M13 bacteriophage surface function as Lewis bases, interacting with the perovskite materials. The M13 bacteriophage‐added perovskite films show a larger grain size and reduced trap‐sites compared with the reference perovskite films. In addition, the existence of the M13 bacteriophage induces light scattering effect, which enhances the light absorption particularly in the long‐wavelength region around 825 nm. Both the passivation effect of the M13 bacteriophage coordinating to the perovskite defect sites and the light scattering effect intensify when the M13 virus‐added perovskite precursor solution is heated at 90 °C prior to the film formation. Heating the solution denatures the M13 bacteriophage by breaking their inter‐ and intra‐molecular bondings. The denatured M13 bacteriophage‐added perovskite solar cells exhibit an efficiency of 20.1% while the reference devices give an efficiency of 17.8%. The great improvement in efficiency comes from all of the three photovoltaic parameters, namely short‐circuit current, open‐circuit voltage, and fill factor, which correspond to the perovskite grain size, trap‐site passivation, and charge transport, respectively.
机译:M13噬菌体是一种自然启发的环保生物材料,用作钙钛矿太阳能电池中的钙钛矿晶体生长模板和晶界钝化剂。在M13噬菌体表面上氨基酸的氨基和羧基作为Lewis碱,与钙钛矿材料相互作用。与参考钙钛矿薄膜相比,M13噬菌体添加的钙钛矿膜显示出较大的晶粒尺寸和降低的陷阱部位。另外,M13噬菌体的存在诱导光散射效应,其提高了厚度在825nm的长波长区域中的光吸收。当M13病毒添加的钙钛矿前体溶液在膜形成之前将M13病毒添加的钙钛矿前体溶液加强时,M13噬菌体的钝化效果强化了肝脏缺陷位点和光散射效果。加热溶液通过破坏其间和分子间染色剂来使M13噬菌体变性。变性的M13噬菌体添加的钙钛矿太阳能电池表现出20.1%的效率,而参考装置的效率为17.8%。效率的大大提高来自所有三个光伏参数,即短路电流,开路电压和填充因子,其分别对应于钙钛矿粒度,陷阱现场钝化和电荷传输。

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