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Beyond Gold: Spin-Coated Ti_3C_2-Based MXene Photodetectors

机译:超越黄金:旋转涂覆的基于Ti_3C_2的MXene光电探测器

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摘要

2D transition metal carbides, known as MXenes, are transparent when the samples are thin enough. They are also excellent electrical conductors with metal-like carrier concentrations. Herein, these characteristics are exploited to replace gold (Au) in GaAs photodetectors. By simply spin-coating transparent Ti3C2-based MXene electrodes from aqueous suspensions onto GaAs patterned with a photoresist and lifted off with acetone, photodetectors that outperform more standard Au electrodes are fabricated. Both the Au- and MXene-based devices show rectifying contacts with comparable Schottky barrier heights and internal electric fields. The latter, however, exhibit significantly higher responsivities and quantum efficiencies, with similar dark currents, hence showing better dynamic range and detectivity, and similar sub-nanosecond response speeds compared to the Au-based devices. The simple fabrication process is readily integratable into microelectronic, photonic-integrated circuits and silicon photonics processes, with a wide range of applications from optical sensing to light detection and ranging and telecommunications.
机译:当样品足够薄时,称为MXenes的2D过渡金属碳化物是透明的。它们还是具有类似金属的载流子浓度的出色电导体。在此,利用这些特性来代替GaAs光电探测器中的金(Au)。通过简单地将透明的基于Ti3C2的MXene电极从水性悬浮液旋涂到用光致抗蚀剂进行图案化并用丙酮剥离的GaAs上,可以制造出性能优于更多标准Au电极的光电探测器。基于Au和MXene的器件均显示具有可比拟的肖特基势垒高度和内部电场的整流触点。然而,后者与基于金的器件相比,在暗电流相似的情况下,显示出更高的响应度和量子效率,因此显示出更好的动态范围和探测率,以及类似的亚纳秒响应速度。简单的制造过程易于集成到微电子,光子集成电路和硅光子过程中,具有从光学传感到光检测,测距和电信的广泛应用。

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