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Welding Perovskite Nanowires for Stable, Sensitive, Flexible Photodetectors

机译:焊接Perovskite纳米线用于稳定,灵敏,柔性的光电探测器

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摘要

Compared with a single nanowire (NW) or NW array, the simpler preparation process of an NW network (NWN) enables it to be fabricated in large-scale, flexible, and wearable applications of photodetectors (PDs). However, the NWN behaves many microinterfaces (MIs) between NWs, seriously limiting the device performance and stability. Here, we demonstrate a welding strategy for an MAPbI(3)( )NWN, which enhances the crystallinity of the NWN and enhances the radial transmission of photogenerated carriers, leading to a better device performance with ultrahigh stability. Our NWN PDs fabricated by using the welding strategy showed ultrahigh performance with an on/off ratio and detectivity of 2.8 X 10(4) and 4.16 X 10(12) Jones, respectively, which are the best performance for reported metal-semiconductor-metal (MSM) perovskite NWN PDs and are comparable to those of single-NW or NW array PDs. More importantly, our unpackaged NWN PDs show ultrahigh storage stability in air with a humidity of 55-65%, and the flexible NWN PDs can enable 250 bending cycles at different bending radii and 1000 bending cycles at fixed bending radii with no performance degradation being observed. These results indicate our welding strategy is very powerful for improving the performance of the NW device with applications in the wearable field.
机译:与单个纳米线(NW)或NW阵列相比,NW网络(NWN)的更简单的制备过程使其能够以大规模,柔性和可穿戴光电探测器(PDS)的耐磨性制造。然而,NWN在NWS之间表现出许多微区别(MIS),严重限制了器件性能和稳定性。这里,我们展示了MAPBI(3)()NWN的焊接策略,其增强了NWN的结晶度并增强了光生载体的径向传输,从而具有超高稳定性的更好的装置性能。我们使用焊接策略制造的NWN PDS,分别显示出超高的性能,探测器的开/关比和4.16×10(12)琼斯的探测器分别为2.8 x 10(4)和4.16×10(12)琼松,这是报告的金属半导体金属的最佳性能(MSM)PEROVSKITE NWN PDS,与单个NW或NW阵列PDS相当。更重要的是,我们的未包装的NWN PDS在空气中显示出湿度为55-65%的空气中的超高储存稳定性,并且柔性NWN PD可以在固定弯曲的半径下在不同弯曲的半径和1000个弯曲周期下启用250个弯曲循环,并且没有观察到没有性能降级的性能劣化。这些结果表明,我们的焊接策略非常强大,可以提高NW设备在可穿戴领域的应用程序的性能。

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