Emission spectra and strain-dependent properties of flexible inkjet printed WSe2–graphene heterostructure photodetectors

IF 5.7 2区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Ridwan F. Hossain, Avra S. Bandyopadhyay, Nirmal Adhikari, Sujan Aryal and Anupama B. Kaul
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Abstract

Heterostructures of WSe2, a two-dimensional (2D) layered material, offer exciting opportunities for development of optoelectronics and sensors, including in flexible, conformal modalities. In this work, few layer WSe2 was synthesized via liquid-phase exfoliation (LPE), where all inkjet printed WSe2–graphene heterostructure photodetectors were assembled on flexible polyimide substrates and their optoelectronic transport properties were characterized. Molecular vibrational spectra were gathered using Raman spectroscopy as a function of temperature from 80 K to 573 K for the few-layer LPE processed WSe2 membranes, from which we infer behaviors related to electron–phonon interactions and phonon lifetimes. The Raman-active E12g and A1g modes experienced a red-shift as temperature was raised, attributed to the lattice potential anharmonicity. The subsequent integration of the LPE-synthesized WSe2 into photodetectors led to the validation of photoresponse toward incoming broadband white-light radiation, where the capacitance–frequency response was also measured. Here, the photoresponsivity was calculated to be ∼0.70 A W−1, and other parameters such as detectivity and the linear dynamic range were also deduced. Temporal measurements revealed the rise and decay times of the photocurrent with respect to the power density, where the rising and falling edge time constants were within the hundred millisecond range. Strain-dependent measurements conducted with bending showed the photocurrent to decrease with increasing bending and strain, as expected. Finally, strain-dependent Raman measurements revealed a blue-shift and increase in emission intensity for both the in-plane and out-of-plane vibrational modes. Our results indicate the promise of heterostructure WSe2 devices for large format photoabsorbers printed on flexible substrates using additive manufacturing approaches, where such devices will be attractive for light-weight wearable and airborne applications.

Abstract Image

Abstract Image

柔性喷墨印刷 WSe2 石墨烯异质结构光电探测器的发射光谱和应变特性
二维(2D)层状材料 WSe2 的异质结构为光电子学和传感器(包括柔性保形模式)的发展提供了令人兴奋的机遇。在这项工作中,通过液相剥离(LPE)合成了几层 WSe2,在柔性聚酰亚胺基底上组装了所有喷墨打印的 WSe2 石墨烯异质结构光电探测器,并对其光电传输特性进行了表征。我们利用拉曼光谱收集了经 LPE 处理的几层 WSe2 膜在 80 K 至 573 K 温度范围内的分子振动光谱,并从中推断出与电子-声子相互作用和声子寿命相关的行为。随着温度的升高,拉曼活性 E12g 和 A1g 模式发生了红移,这归因于晶格势能的非谐波性。随后,将 LPE 合成的 WSe2 集成到光电探测器中,验证了对进入的宽带白光辐射的光响应,同时还测量了电容-频率响应。计算得出的光致反射率为 ∼0.70 A W-1,同时还推导出了其他参数,如检测率和线性动态范围。时间测量显示了光电流相对于功率密度的上升和衰减时间,其中上升和下降沿时间常数在百毫秒范围内。在弯曲情况下进行的应变测量显示,光电流随着弯曲和应变的增加而减小,正如预期的那样。最后,应变依赖性拉曼测量显示,面内和面外振动模式的发射强度都发生了蓝移和增加。我们的研究结果表明,异质结构 WSe2 器件有望用于使用增材制造方法在柔性基底上打印的大幅面光吸收器。
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来源期刊
Journal of Materials Chemistry C
Journal of Materials Chemistry C MATERIALS SCIENCE, MULTIDISCIPLINARY-PHYSICS, APPLIED
CiteScore
10.80
自引率
6.20%
发文量
1468
期刊介绍: The Journal of Materials Chemistry is divided into three distinct sections, A, B, and C, each catering to specific applications of the materials under study: Journal of Materials Chemistry A focuses primarily on materials intended for applications in energy and sustainability. Journal of Materials Chemistry B specializes in materials designed for applications in biology and medicine. Journal of Materials Chemistry C is dedicated to materials suitable for applications in optical, magnetic, and electronic devices. Example topic areas within the scope of Journal of Materials Chemistry C are listed below. This list is neither exhaustive nor exclusive. Bioelectronics Conductors Detectors Dielectrics Displays Ferroelectrics Lasers LEDs Lighting Liquid crystals Memory Metamaterials Multiferroics Photonics Photovoltaics Semiconductors Sensors Single molecule conductors Spintronics Superconductors Thermoelectrics Topological insulators Transistors
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