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用于紫外偏振敏感光电探测器的低温模板辅助合成二维钙钛矿光栅单晶薄膜

Template-Assisted Synthesis of 2D Perovskite Grating Single Crystal Films at Low Temperatures for UV Polarization-Sensitive Photodetectors.

作者信息

Li Yanhui, Gui Pengbin, Wei Shengyang, Sun Yanming, Yang Liangpan, Hu Yali, Chen Zhiliang, Wang Siliang, Zeng Wei, Ren Xingang, Huang Zhixiang

机构信息

Information Materials and Intelligent Sensing Laboratory of Anhui Province, Industry-Education-Research Institute of Advanced Materials and Technology for Integrated Circuits, Anhui University, No. 111 Jiulong Road, Hefei, Anhui, 230601, P. R. China.

出版信息

Small. 2024 Mar;20(13):e2305207. doi: 10.1002/smll.202305207. Epub 2023 Nov 14.

Abstract

2D perovskites have attracted tremendous attention due to their superior optoelectronic properties and potential applications in optoelectronic devices. Especially, the larger bandgap of 2D perovskite means that they are suitable for UV photodetection. However, the layered structure of 2D perovskites hinders the interlayer carrier transport, which limits the improvement of device performance. Therefore, nanoscale structures are normally used to enhance the light absorption ability, which is an effective strategy to improve the photocurrent in 2D perovskite-based photodetectors. Herein, a template-assisted low-temperature method is proposed to fabricate 2D perovskite ((CHCHNH)PbBr, (PEA)PbBr) grating single crystal films (GSCFs). The crystallinity of the (PEA)PbBr GSCFs is significantly improved due to the slow evaporation of the precursor solution under low temperatures. Based on this high crystalline quality and extremely ordered microstructures, the metal-semiconductor-metal photodetectors are assembled. Finite-different time-domain (FDTD) simulation and experiment indicate that the GSCF-based photodetectors exhibit significantly improved performance in comparison with the plane devices. The optimized 2D perovskite photodetectors are sensitive to UV light and demonstrate a responsivity and detectivity of 28.6 mA W and 2.4 × 10 Jones, respectively. Interestingly, the photocurrent of this photodetector varies as the angle of the incident polarized light, resulting in a high polarization ratio of 1.12.

摘要

二维钙钛矿因其优异的光电性能以及在光电器件中的潜在应用而备受关注。特别是,二维钙钛矿较大的带隙意味着它们适用于紫外光探测。然而,二维钙钛矿的层状结构阻碍了层间载流子传输,这限制了器件性能的提升。因此,通常采用纳米级结构来增强光吸收能力,这是提高基于二维钙钛矿的光探测器光电流的有效策略。在此,提出了一种模板辅助低温方法来制备二维钙钛矿((CHCHNH)PbBr,(PEA)PbBr)光栅单晶薄膜(GSCFs)。由于前驱体溶液在低温下缓慢蒸发,(PEA)PbBr GSCFs的结晶度得到显著提高。基于这种高结晶质量和极其有序的微观结构,组装了金属-半导体-金属光探测器。时域有限差分(FDTD)模拟和实验表明,与平面器件相比,基于GSCF的光探测器性能有显著提升。优化后的二维钙钛矿光探测器对紫外光敏感,其响应度和探测率分别为28.6 mA W和2.4×10琼斯。有趣的是,该光探测器的光电流随入射偏振光的角度而变化,导致高达1.12的偏振比。

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