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Air-processed active-layer of organic solar cells investigated by conducting AFM for precise defect detection

机译:通过导电AFM进行精确缺陷检测来研究空气加工的有机太阳能电池层

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Atmospheric processing of organic solar cells (OSCs) has already emerged and will be a challenge to emulate with the existing market leaders in terms of overall cost reduction and large scale production. However, the presence of defects in the active layer of OSC needs to be identified effectively to minimize the performance degradation involved. In this work, conventional bulk-heterojunction (BHJ) OSCs are fabricated entirely in air having an efficiency ( η ) up to 4.0% using P3HT and PC _(61) BM as the donor and acceptor, respectively. The devices have exhibited reasonable degradation of performance parameters with aging time and uninterrupted illumination during characterization in ambient air. This visible degradation was as expected because of environmental oxygen and moisture penetration into the photoactive layer through the defects, which can be prevented by immediate encapsulation. Conducting AFM is utilized here to visualize these defects more prominently, which are impossible to see in typical AFM topography. Overall, significant development of atmospheric processing of BHJ OSCs is made, and performance stability is also studied to bring down the fabrication costs in the near future.
机译:有机太阳能电池(OSC)的大气加工已经出现,并且在整体成本降低和大规模生产方面,在现有的市场领导者中呈现出挑战。然而,需要有效地识别OSC的有源层中的缺陷的存在,以最小化所涉及的性能下降。在这项工作中,传统的散装异质结(BHJ)OSC分别在使用P3HT和PC _(61)BM作为供体和受体的效率(η)的空气中完全制造,其高达4.0%。该器件表现出合理的性能参数降低性能参数,随着老化时间和在环境空气中表征期间的不间断照射。这种可见的降解是由于环境氧气和水分渗透到光活性层中,通过缺陷可以通过立即封装来防止。在此用于进行AFM以更突出地可视化这些缺陷,这在典型的AFM地形中是不可能的。总体而言,制造了大气处理的大型开发,并研究了性能稳定性,以在不久的将来降低制造成本。

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