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Self-Deposition of 2D Molybdenum Sulfides on Liquid Metals

机译:液态金属上的2D钼硫化物的自沉

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2D transition metal dichalcogenides (TMDs) play increasingly significant roles in research and future optoelectronics. However, the large-scale deposition of 2D TMDs remains challenging due to sparse nucleation and substrate dependency. Liquid metals can offer effective solutions to meet these challenges due to their reactive, non-polarized, and templating properties. Here, self-deposition of 2D molybdenum sulfide is shown by introducing a molybdenum precursor onto the surface of a eutectic alloy of gallium and indium (EGaIn). EGaIn serves as an ultra-smooth template and reducing agent for the precursor to form large-scale planar molybdenum sulfides, which is transferrable to any substrate. The molybdenum sulfides form spontaneously on the surface of EGaIn, which has a sufficient potential to drive the cathodic reactions of the deposition process. A highly crystalline 2H-MoS(2)is obtained after a final annealing step. This work demonstrates a fundamentally new capability for the formation of large-scale 2D TMDs.
机译:2D过渡金属二氯甲酸(TMDS)在研究和未来光电子中发挥着越来越大的作用。然而,由于稀疏成核和基材依赖性,2D TMD的大规模沉积保持挑战。由于其反应性,不极化和模板性能,液体金属可以提供有效的解决方案以满足这些挑战。这里,通过将钼前体引入镓和铟的共晶合金的表面上,示出了2D钼硫化钼的自沉沉积。 Egain用作超光滑的模板和还原剂,用于形成大规模的平面硫化钼,其可转移到任何基材。硫化钼在Egain的表面上自发地形成,其具有足够的潜力来驱动沉积过程的阴极反应。在最终退火步骤之后获得高度结晶的2H-MOS(2)。这项工作展示了对大规模2D TMDS形成的根本性新能力。

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