Revealing the origin of the photo-instability to improve the performance of PbS quantum dot solar

IF 9 2区 材料科学 Q1 CHEMISTRY, PHYSICAL Nano Research Pub Date : 2024-01-24 DOI:10.1007/s12274-024-6462-3
Chunyan Wu, Jinpeng Yang, Shuo Ding, Tengzuo Huang, Tao Sun, Lei Qian, Chaoyu Xiang
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Abstract

Stability under light is critical for lead sulfide quantum dots (PbS QDs) in solar cell applications. To improve the stability of PbS QDs solar cells, the influence of the light illumination on the performance of the as-prepared PbS QDs solar cells was carefully investigated. Combined with X-ray and ultraviolet photoelectron spectroscopies, it was revealed that the 1,2-ethanedithiol (EDT) ligands of the hole transport p-type PbS QDs reacted with the ligands of the PbS QDs active layer under light illumination. The reaction not only undermines the n-type characteristics of the active layer, but also increases the number of defects, leading to a serious deterioration in device performance. An interface layer was introduced to block the EDT penetration to avoid this issue, significantly improving the stability of the device under light irradiation. Moreover, the separation of carriers was also enhanced due to the better matching the energy level of the interface layer. The device with an interface layer yielded a power conversion efficiency of 12.55% and sustained to a long time light illumination.

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揭示光不稳定性的起源以提高 PbS 量子点太阳能的性能
光稳定性是硫化铅量子点在太阳能电池中应用的关键。为了提高PbS量子点太阳能电池的稳定性,研究了光照对制备的PbS量子点太阳能电池性能的影响。结合x射线和紫外光电子能谱,发现空穴输运p型PbS量子点的1,2-乙二醇(EDT)配体在光照下与PbS量子点活性层的配体发生了反应。该反应不仅破坏了有源层的n型特性,还增加了缺陷数量,导致器件性能严重恶化。为了避免这个问题,引入了一个界面层来阻挡EDT的穿透,显著提高了器件在光照射下的稳定性。此外,由于界面层的能级匹配较好,载流子的分离也增强了。该器件具有界面层,功率转换效率为12.55%,并能保持长时间的光照明。
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来源期刊
Nano Research
Nano Research 化学-材料科学:综合
CiteScore
14.30
自引率
11.10%
发文量
2574
审稿时长
1.7 months
期刊介绍: Nano Research is a peer-reviewed, international and interdisciplinary research journal that focuses on all aspects of nanoscience and nanotechnology. It solicits submissions in various topical areas, from basic aspects of nanoscale materials to practical applications. The journal publishes articles on synthesis, characterization, and manipulation of nanomaterials; nanoscale physics, electrical transport, and quantum physics; scanning probe microscopy and spectroscopy; nanofluidics; nanosensors; nanoelectronics and molecular electronics; nano-optics, nano-optoelectronics, and nano-photonics; nanomagnetics; nanobiotechnology and nanomedicine; and nanoscale modeling and simulations. Nano Research offers readers a combination of authoritative and comprehensive Reviews, original cutting-edge research in Communication and Full Paper formats. The journal also prioritizes rapid review to ensure prompt publication.
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