Zhai Xueting, Zhang Renxiang, Sheng Huixiang, Wang Jin, Zhu Yameng, Lu Zichen, Li Zhuoyao, Huang Xiao, Li Hai, Lu Gang
Key Laboratory of Flexible Electronics (KLOFE) and Institute of Advanced Materials (IAM), Nanjing Tech University (NanjingTech), 30 South Puzhu Road, Nanjing 211816, China.
ACS Nano. 2021 Mar 23;15(3):5661-5670. doi: 10.1021/acsnano.1c00838. Epub 2021 Mar 10.
Single and a few atomic-layer molybdenum disulfide (MoS) is a promising material in the fields of hydrogen generation, battery, supercapacitor, and environmental protection, owing to the outstanding electronic, optical, and catalytic properties. Although many approaches have been developed for exfoliation of MoS sheets, it is still essential to develop simple, convenient, and environmental friendly exfoliation methods. More importantly, the microscopic exfoliation process and the mechanism are still not clear, limiting a deeper understanding of the exfoliation. Herein, we develop a convenient and clean method for exfoliation of the 2H phase MoS (2H-MoS) deposited on an indium tin oxide (ITO) surface. Importantly, the exfoliation process is observed directly and continuously under an optical microscope to reveal the detailed exfoliation process and mechanism. As illustrated, the light illumination triggers the exfoliation of the 2H-MoS sheets, and the presence of water is essential in this exfoliation process. The light intensity and wavelength, humidity, and bias all affect the exfoliation process obviously. The exfoliation is caused by the vaporization of the water molecules intercalated in 2H-MoS interlayers. By using this method, 2H-MoS nanosheets with different thicknesses are prepared on the ITO substrate, and microscopic catalysis mapping of the exfoliated sheets is demonstrated with single-molecule fluorescence microscopy, revealing that the prepared thin-layer 2H-MoS nanosheets show improved electrocatalysis activity (roughly 20 times). Our work will not only help deepen the understanding of exfoliation process of two-dimensional nanosheets but also provide an effective tool for the study of various properties of the exfoliated sheets.
单层及少数原子层的二硫化钼(MoS₂)因其优异的电子、光学和催化性能,在制氢、电池、超级电容器及环境保护等领域是一种很有前景的材料。尽管已经开发出许多用于剥离MoS₂片层的方法,但开发简单、便捷且环保的剥离方法仍然至关重要。更重要的是,微观剥离过程及其机制仍不明确,这限制了对剥离过程更深入的理解。在此,我们开发了一种便捷且清洁的方法来剥离沉积在氧化铟锡(ITO)表面的2H相MoS₂(2H-MoS₂)。重要的是,在光学显微镜下直接且连续地观察到了剥离过程,以揭示详细的剥离过程和机制。如图所示,光照引发了2H-MoS₂片层的剥离,并且水的存在在该剥离过程中至关重要。光强度、波长、湿度和偏压都对剥离过程有明显影响。这种剥离是由插入2H-MoS₂层间的水分子汽化引起的。通过使用这种方法,在ITO衬底上制备了不同厚度的2H-MoS₂纳米片,并用单分子荧光显微镜对剥离后的片层进行了微观催化映射,结果表明所制备的薄层2H-MoS₂纳米片显示出增强的电催化活性(约为20倍)。我们的工作不仅有助于加深对二维纳米片剥离过程的理解,还为研究剥离后片层的各种性质提供了一种有效的工具。