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Contact Engineering of Inkjet-printed Organometallic Halide Perovskites for Photodetectors and Solar Cells

机译:用于光电探测器和太阳能电池的喷墨印刷有机金属卤化物冻结器的联系方式

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Inkjet printing is an emerging approach that holds great potential to revolutionize the fabrication of electronic and optoelectronic devices since it provides a cost-effective, time-efficient, and more flexible route for device fabrication. In this work, we fabricated all inkjet-printed heterostructure photodetectors (PDs) on a flexible polyimide (PI) substrates with engineered solution-processed electrical contacts. The engineered silver (Ag) and graphene (Gr) inks were directly inkjet-printed on the solution-processed two-dimensional (2D) organometallic halide (CH3(CH2)3NH3)2(CH3NH3)n-1PbnI3n+1 (n = 4) layered perovskites, where we demonstrate their utility as efficient electrical contacts to 2D perovskites. We will report on the device figures of merit measured in such devices, both for the Ag-perovskite and Gr-perovskite interfaces. These values will be also compared with prior reported evaporated metal contacts made to 2D perovskites PDs, though such reports are very limited. The thermionic emission model is invoked to determine the Schottky barrier (ΦB) through the temperature-dependent transport measurements we will present for the two contact electrodes. This work also provides the basis for utilizing the 2D perovskites in solar cell structures by sandwiching the same perovskite layer between the TiO2 and Spiro-MeOTAD electron-transfer layer (ETL) and hole-transport layer (HTL), respectively. Also, the engineered Ag and Gr ink has the potential to be used as an electrode in inkjet printed flexible perovskite solar cells (PSCs).
机译:喷墨印刷是一种新兴的方法,其具有彻底改变电子和光电器件的制造的巨大潜力,因为它提供了用于器件制造的成本效益,时间效率和更灵活的路径。在这项工作中,我们在具有工程化溶液加工的电触点的柔性聚酰亚胺(PI)基板上制造了所有喷墨印刷的异质结构光电探测器(PDS)。工程化银(Ag)和石墨烯(GR)墨水直接喷墨 - 在溶液加工的二维(2D)有机金属卤化物上印刷 - 印刷(CH 3 (CH. 2 的) 3 NH. 3 的) 2 (CH. 3 NH. 3 的) n-1 PB. n 一世 3n + 1 (n = 4)分层佩罗夫斯库茨,在那里我们将其效用作为高效的电气接触到2D Perovskites。我们将报告在此类设备中测量的器件数字,无论是AG-PEROVSKITE和GR-PEROVSKITE接口。还将这些值与先前报道的蒸发金属触点进行比较,尽管这些报告非常有限。调用热离子发射模型以通过依赖于温度的传输测量来确定肖特基屏障(φB),我们将呈现两个接触电极。该作品还通过分别在TiO 2和螺电池电子传递层(ETL)和空穴传输层(HTL)之间夹住相同的钙钛矿层,为利用太阳能电池结构中的2D钙钛矿提供了基础。而且,工程化AG和GR油墨具有用作喷墨印刷柔性钙钛矿太阳能电池(PSC)中的电极。

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