Jadhav P R, Kolhe P T, Ghemud V S, Shelke P N, Patole S P, Dhole S D, Dahiwale S S
Department of Physics, Savitribai Phule Pune University, Pune 411007, India.
Department of Physics, PDEA's Baburaoji Gholap College, Pune 411027, India.
Nanotechnology. 2024 May 28;35(33). doi: 10.1088/1361-6528/ad4901.
The tunability of the transition metal dichalcogenide properties has gained attention from numerous researchers due to their wide application in various fields including quantum technology. In the present work, WShas been deposited on fluorine doped tin oxide substrate and its properties have been studied systematically. These samples were irradiated using gamma radiation for various doses, and the effect on structural, morphological, optical and electrical properties has been reported. The crystallinity of the material is observed to be decreased, and the results are well supported by x-ray diffraction, Raman spectroscopy techniques. The increase in grain boundaries has been supported by the agglomeration observed in the scanning electron microscopy micrographs. The XPS results of WSafter gamma irradiation show evolution of oxygen, carbon, C=O, W-O and SOpeaks, confirming the addition of impurities and formation of point defect. The gamma irradiation creates point defects, and their density increases considerably with increasing gamma dosage. These defects crucially altered the structural, optical and electrical properties of the material. The reduction in the optical band gap with increased gamma irradiation is evident from the absorption spectra and respective Tauc plots. Thegraphs show a 1000-fold increase in the saturation current after 100 kGy gamma irradiation dose. This work has explored the gamma irradiation effect on the WSand suggests substantial modification in the material and enhancement in electrical properties.
过渡金属二硫属化物特性的可调性因其在包括量子技术在内的各个领域的广泛应用而受到众多研究人员的关注。在本工作中,WS已沉积在氟掺杂氧化锡衬底上,并对其特性进行了系统研究。这些样品用不同剂量的伽马射线辐照,并报道了对结构、形态、光学和电学性质的影响。观察到材料的结晶度降低,X射线衍射、拉曼光谱技术很好地支持了这一结果。扫描电子显微镜照片中观察到的团聚现象支持了晶界的增加。伽马辐照后WS的XPS结果显示了氧、碳、C=O、W-O和SO峰的演变,证实了杂质的添加和点缺陷的形成。伽马辐照产生点缺陷,其密度随着伽马剂量的增加而显著增加。这些缺陷极大地改变了材料的结构、光学和电学性质。从吸收光谱和相应的陶克图可以明显看出,随着伽马辐照剂量的增加,光学带隙减小。这些图表显示,在100 kGy伽马辐照剂量后,饱和电流增加了1000倍。这项工作探索了伽马辐照对WS的影响,并表明材料有实质性的改性和电学性能的增强。