Scalable Deposition of MoS2 Thin Films with Controlled Doping for Photodetectors

IF 5.3 2区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY ACS Applied Nano Materials Pub Date : 2024-12-02 DOI:10.1021/acsanm.4c0172910.1021/acsanm.4c01729
Rosy Rahman, Riya Sadhukhan, Subhadip Ghosh, Dipak Kumar Goswami and Tapan Kumar Nath*, 
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Abstract

Molybdenum disulfide (MoS2), the most widely explored transition metal dichalcogenide, is a promising candidate for developing high-performance photodetectors due to having a wide range of electric and optoelectronic properties. However, the controlled synthesis of a highly crystalline large-area MoS2 thin film and the effect of noble metal (Au, Ag) nanoparticles and TM (Co) ion doping on its photoelectrical properties are still challenging. Herein, we report the direct growth of wafer-scale MoS2 thin films utilizing a facile polymer-free approach by a solution-phase coating process, followed by thermal annealing. A systematic study on the photoelectrical properties of the Au-, Ag-, and Co-doped (all variants are in 10 at. wt %) MoS2 photodetectors reveals that the Co-MoS2 device exhibits excellent photoresponse properties, which are also evidenced theoretically. Moreover, the Co-dopant amount is varied (5, 20 at. wt %) to decipher the impact of Co-doping on the photoresponse properties and determine the optimum doping percentage. The highest (20 at. wt %) Co-doped MoS2 photodetector exhibits good photoresponse characteristics at low voltage with minimal noise and high stability (retaining 86% of its photoresponsivity after the 30th day), attributed to the long-lived trap states, the photogating effect, more n-type doping, and generation of more charge carriers. Interestingly, the variations in Co-dopant concentrations lead to tunable photoresponse in different (blue, green, and red) laser illuminations, attributed to the band gap tunability with variable doping. This simple TM doping approach proposed in this study for improving the performance of MoS2 photodetectors can open up an avenue for research for other 2D materials, finding potential applications in photodetection and low-voltage-based operating devices.

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二硫化钼(MoS2)是应用最广泛的过渡金属二卤化物,具有广泛的电学和光电特性,是开发高性能光电探测器的理想候选材料。然而,高结晶大面积 MoS2 薄膜的可控合成以及贵金属(Au、Ag)纳米颗粒和 TM(Co)离子掺杂对其光电特性的影响仍具有挑战性。在此,我们报告了利用溶液相镀膜工艺,采用一种简便的无聚合物方法直接生长晶圆级 MoS2 薄膜,然后进行热退火。对掺金、掺银和掺钴(所有变量均为 10 at. wt %)MoS2 光电探测器的光电特性进行系统研究后发现,掺钴 MoS2 器件具有优异的光响应特性,理论上也证明了这一点。此外,还改变了掺杂钴的数量(5%、20% wt %),以解读掺杂钴对光响应特性的影响,并确定最佳掺杂百分比。掺杂钴量最高(20 wt %)的 MoS2 光电探测器在低电压下表现出良好的光响应特性,噪声最小,稳定性高(第 30 天后仍保持 86% 的光致发光率),这归功于长寿命陷阱态、光诱导效应、更多的 n 型掺杂以及产生更多的电荷载流子。有趣的是,掺杂 Co 的浓度变化导致在不同(蓝色、绿色和红色)激光照射下产生可调的光响应,这归因于可变掺杂的带隙可调性。本研究中提出的这种用于提高 MoS2 光电探测器性能的简单 TM 掺杂方法可以为其他二维材料的研究开辟一条途径,从而为光电探测和基于低电压的操作器件找到潜在的应用领域。
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来源期刊
CiteScore
8.30
自引率
3.40%
发文量
1601
期刊介绍: ACS Applied Nano Materials is an interdisciplinary journal publishing original research covering all aspects of engineering, chemistry, physics and biology relevant to applications of nanomaterials. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important applications of nanomaterials.
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