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首页> 外文期刊>Nanoscale >Highly efficient ligand-modified manganese ion doped CsPbCl(3)perovskite quantum dots for photon energy conversion in silicon solar cells
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Highly efficient ligand-modified manganese ion doped CsPbCl(3)perovskite quantum dots for photon energy conversion in silicon solar cells

机译:高效ligand-modified锰离子掺杂CsPbCl(3)钙钛矿光子的量子点硅太阳能电池的能量转换

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Manganese ion doped CsPbX(3)perovskite quantum dots (QDs) demonstrate high absorption of ultraviolet (UV) light and efficient orange emission with a large Stokes shift, and are almost transparent to visible light, which are ideal photon energy converters for solar cells. In this work, Mn(2+)ion doped CsPbCl(3)QDs were synthesized by incorporating a long-chain ammonium ligand dodecyl dimethylammonium chloride (DDAC), in which the DDAC ligand not only played the role of replacing the surface ligands of QDs, but also enhanced the efficiency and stability of Mn(2+)ion doped QDs. The as-prepared QD sample displayed a photoluminescence quantum yield (PLQY) as high as 91% and served as a photon energy converter for silicon solar cells (SSCs). The photoelectric conversion efficiency (PCE) of SSCs increased from 19.64% to 20.65% with a relative enhancement of 5.14%. This work displays a method to tune the efficiency of QDs by modifying the surface ligands and an efficient photon energy converter for SSCs, which is of great importance for practical applications.
机译:锰离子掺杂CsPbX(3)钙钛矿量子点(量子点)演示高吸收的紫外线和高效的橙色发射一个大斯托克斯位移,几乎对可见光透明,这是太阳能电池的理想光子能量转换器。在这个工作中,Mn(2 +)离子掺杂CsPbCl量子点(3)合成,通过融合一个长链配位体十二烷基铵dimethylammonium氯(DDAC),不仅DDAC配体取代了量子点表面配体的作用,而且还提高了效率和稳定性Mn(2 +)离子量子点掺杂。展示了光致发光量子产率(PLQY)高达91%和担任一个光子硅太阳能电池能量转换器(精原细胞)。光电转换效率(PCE)精原细胞,从19.64%上升到20.65%5.14%的相对增强。量子点的方法来优化的效率修改表面配体和一个有效的光子能量转换器为精原细胞,这是重视实际应用。

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