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Charge Dynamics in Solution-Processed Nanocrystalline CuInS2 Solar Cells

机译:溶液处理的纳米晶CuInS2太阳能电池中的电荷动力学

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摘要

We investigate charge dynamics in solar cells constructed using solution-processed layers of CuInS2 ((IS) nanocrystals (NCs) as the electron donor and CdS as the electron acceptor. By using time-resolved spectroscopic techniques, we are able to observe photoinduced absorptions that we attribute to the mobile hole carriers in the NC film. In combination with transient photocurrent and photovoltage measurements, we monitor charge dynamics on time scales from 300 fs to 1 ms. Carrier dynamics are investigated for devices with CIS layers composed of either colloidally synthesized 1,3-benzenedithiol-capped nanocrystals or in situ sal gel synthesized thin films as the active layer. We find that deep trapping of holes in the colloidal NC cells is responsible for decreases in the open-circuit voltage and fill factor as compared to those of the sol-gel synthesized CIS/CdS cell.
机译:我们研究了使用CuInS2((IS)纳米晶体(NC))作为电子给体并使用CdS作为电子受体的溶液处理层构造的太阳能电池中的电荷动力学,通过使用时间分辨光谱技术,我们能够观察到光致吸收我们将其归因于NC薄膜中的可移动空穴载流子,并结合瞬态光电流和光电压测量,在300 fs至1 ms的时间范围内监控电荷动态,并研究了由胶体合成的CIS层组成的器件的载流子动力学1 ,3-苯二硫醇封端的纳米晶体或原位sal gel合成的薄膜作为活性层,我们发现,胶态NC单元中空穴的深陷与开路电压和填充因子的降低有关。溶胶-凝胶合成的CIS / CdS细胞。

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