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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Modular Fabrication of Hybrid Bulk Heterojunotion Solar Cells Based on Breakwater-like CdSe Tetrapod Nanocrystal Network Infused with P3HT
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Modular Fabrication of Hybrid Bulk Heterojunotion Solar Cells Based on Breakwater-like CdSe Tetrapod Nanocrystal Network Infused with P3HT

机译:基于注入P3HT的防波堤CdSe四脚形纳米晶体网络的混合体大批量异质结太阳能电池的模块化制造。

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We demonstrate the modular fabrication of nanocrystal/polymer hybrid bulk heterojunction solar cells based on breakwater-like CdSe tetrapod (TP) nanocrystal networks infused with poly(3-hexylthiophene) (P3HT). This fabrication method consists of sequential steps for forming the hybrid active layers: the assembly of a breakwater-like CdSe TP network followed by nanocrystal surface modification and the infusion of semiconducting polymers. Such a modular approach enables the independent control of the nanoscopic morphology and surface chemistry of the nanocrystals, which are generally known to exhibit complex correlations, in a reproducible manner. Using these devices, the influence of the passivation ligands on solar cell characteristics could be clarified from temperature-dependent solar cell experiments. We found that a 2-fold increase in the short-circuit current with 1- hexylamine ligands, compared with the value based on pyridine ligands, originates from the reduced depth of trap states, minimizing the trap-assisted bimolecular recombination process. Overall, the work presented herein provides a versatile approach to fabricating nanocrystal/polymer hybrid solar cells and systematically analyzing the complex nature of these devices.
机译:我们展示了基于防波堤样CdSe四脚架(TP)纳米晶体网络注入聚(3-己基噻吩)(P3HT)的纳米晶体/聚合物混合体整体异质结太阳能电池的模块化制造。该制造方法包括用于形成混合有源层的顺序步骤:组装防波堤样CdSe TP网络,然后进行纳米晶体表面改性和注入半导体聚合物。这种模块化方法使得能够以可再现的方式独立控制通常已知表现出复杂相关性的纳米晶体的纳米形态和表面化学。使用这些装置,可以从依赖温度的太阳能电池实验中弄清钝化配体对太阳能电池特性的影响。我们发现,与基于吡啶配体的值相比,使用1-己胺配体的短路电流增加了2倍,这是由于陷阱态的深度减小而导致的,从而最大程度地减少了陷阱辅助的双分子重组过程。总体而言,本文提出的工作提供了一种通用的方法来制造纳米晶体/聚合物混合太阳能电池,并系统地分析这些设备的复杂性质。

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