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Distinct enhancement of sub-bandgap photoresponse through intermediate band in high dose implanted ZnTe:O alloys

机译:通过高剂量植入ZnTe:O合金中中间带的子带隙光响应的明显增强

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The demand for high efficiency intermediate band (IB) solar cells is driving efforts in producing high quality IB photovoltaic materials. Here, we demonstrate ZnTe:O highly mismatched alloys synthesized by high dose ion implantation and pulsed laser melting exhibiting optically active IB states and efficient sub-gap photoresponse, as well as investigate the effect of pulsed laser melting on the structural and optical recovery in detail. The structural evolution and vibrational dynamics indicates a significant structural recovery of ZnTe:O alloys by liquid phase epitaxy during pulsed laser melting process, but laser irradiation also aggravates the segregation of Te in ZnTe:O alloys. A distinct intermediate band located at 1.8?eV above valence band is optically activated as evidenced by photoluminescence, absorption and photoresponse characteristics. The carrier dynamics indicates that carriers in the IB electronic states have a relatively long lifetime, which is beneficial for the fast separation of carriers excited by photons with sub-gap energy and thus the improved overall conversion efficiency. The reproducible capability of implantation and laser annealing at selective area enable the realization of high efficient lateral junction solar cells, which can ensure extreme light trapping and efficient charge separation.
机译:对高效率中间带(IB)太阳能电池的需求正在推动生产高质量的IB光伏材料的努力。在这里,我们展示了由高剂量离子注入和脉冲激光熔化合成的高度不匹配的合金,并且具有光学活性IB状态和有效的子间隙光响应,以及研究脉冲激光熔化对结构和光学回收的影响。结构演变和振动动力学表明ZnTe:O合金通过液相外延在脉冲激光熔化过程中的显着结构恢复,但激光照射还加剧了ZnTe:O合金中TE的偏析。位于1.8°的不同中间带以上高于价带上方,如光致发光,吸收和光响应特性所证明的那样光学激活。载波动态指示IB电子状态中的载波具有相对较长的寿命,这有利于光子激励的载流子与子间隙能量的快速分离,从而提高了整体转换效率。选择性区域的植入和激光退火的可再现能力使得能够实现高效的横向结太阳能电池,这可以确保极端光捕获和有效的电荷分离。

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