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基于硒掺杂黑磷薄片的热电太赫兹光探测器。

Thermoelectric terahertz photodetectors based on selenium-doped black phosphorus flakes.

机构信息

NEST, CNR-Istituto Nanoscienze and Scuola normale Superiore, Piazza San Silvestro 12, Pisa 56127, Italy.

出版信息

Nanoscale. 2019 Jan 23;11(4):1995-2002. doi: 10.1039/c8nr09060b.

Abstract

Chemical doping of bulk black phosphorus is a well-recognized way to reduce surface oxidation and degradation. Here, we report on the fabrication of terahertz frequency detectors consisting of an antenna-coupled field-effect transistor (FET) with an active channel of Se-doped black phosphorus. Our devices show a maximum room-temperature hole mobility of 1780 cm2 V-1 s-1 in a SiO2-encapsulated FET. A room-temperature responsivity of 3 V W-1 was observed, with a noise-equivalent power of 7 nW Hz-1/2 at 3.4 THz, comparable with the state-of-the-art room-temperature photodetectors operating in the same frequency range. The inclusion of Se dopants in the growth process of black phosphorus crystals enables the optimization of the transport and optical performances of FETs in the far-infrared with a high potential for the development of BP-based electro-optical devices. We also demonstrate that the flake thickness can be tuned according to the target application. Specifically, thicker flakes (>80 nm) are suitable for applications in which high mobility and high speed are essential, thinner flakes (<10 nm) are more appropriate for applications requiring high on/off current ratios, while THz photodetection is optimal with flakes 30-40 nm thick, due to the larger carrier density tunability.

摘要

块状黑磷的化学掺杂是减少表面氧化和降解的一种公认方法。在这里,我们报告了由天线耦合场效应晶体管(FET)和硒掺杂黑磷有源通道组成的太赫兹频率探测器的制造。我们的器件在 SiO2 封装的 FET 中表现出最大的室温空穴迁移率为 1780 cm2 V-1 s-1。观察到室温响应率为 3 V W-1,在 3.4 THz 时噪声等效功率为 7 nW Hz-1/2,与在相同频率范围内工作的最先进的室温光电探测器相当。在黑磷晶体的生长过程中加入 Se 掺杂剂,使得 FET 在远红外波段的传输和光学性能得到优化,为基于 BP 的电光器件的发展提供了很高的潜力。我们还证明可以根据目标应用来调整薄片厚度。具体而言,较厚的薄片(>80nm)适用于需要高迁移率和高速的应用,较薄的薄片(<10nm)更适用于需要高导通/关断电流比的应用,而 30-40nm 厚的薄片则最适合太赫兹光电探测,因为其载流子密度可调性更大。

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