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首页> 外文期刊>Journal of Applied Physics >Air sensitivity of MoS_2, MoSe_2, MoTe_2, HfS_2, and HfSe_2
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Air sensitivity of MoS_2, MoSe_2, MoTe_2, HfS_2, and HfSe_2

机译:MoS_2,MoSe_2,MoTe_2,HfS_2和HfSe_2的空气敏感性

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摘要

A surface sensitivity study was performed on different transition-metal dichalcogenides (TMDs) under ambient conditions in order to understand which material is the most suitable for future device applications. Initially, Atomic Force Microscopy and Scanning Electron Microscopy studies were carried out over a period of 27 days on mechanically exfoliated flakes of 5 different TMDs, namely, MoS_2, MoSe_2, MoTe_2, HfS_2, and HfSe_2. The most reactive were MoTe_2 and HfSe_2. HfSe_2, in particular, showed surface protrusions after ambient exposure, reaching a height and width of approximately 60 nm after a single day. This study was later supplemented by Transmission Electron Microscopy (TEM) cross-sectional analysis, which showed hemispherical-shaped surface blisters that are amorphous in nature, approximately 180-240 nm tall and 420-540 nm wide, after 5 months of air exposure, as well as surface deformation in regions between these structures, related to surface oxidation. An X-ray photoelectron spectroscopy study of atmosphere exposed HfSe-2 was conducted over various time scales, which indicated that the Hf undergoes a preferential reaction with oxygen as compared to the Se. Energy-Dispersive X-Ray Spectroscopy showed that the blisters are Se-rich; thus, it is theorised that HfO_2 forms when the HfSe_2 reacts in ambient, which in turn causes the Se atoms to be aggregated at the surface in the form of blisters. Overall, it is evident that air contact drastically affects the structural properties of TMD materials. This issue poses one of the biggest challenges for future TMD-based devices and technologies.
机译:为了在环境条件下对不同的过渡金属二卤化物(TMD)进行表面敏感性研究,以了解哪种材料最适合未来的设备应用。最初,原子力显微镜和扫描电子显微镜研究在27天的时间内对5种不同TMD(即MoS_2,MoSe_2,MoTe_2,HfS_2和HfSe_2)的机械剥落薄片进行了研究。反应性最高的是MoTe_2和HfSe_2。尤其是,HfSe_2在环境暴露后显示出表面突起,一天后达到约60 nm的高度和宽度。后来,该研究得到了透射电子显微镜(TEM)横截面分析的补充,该分析显示,暴露于空气中5个月后,半球形的表面水泡本质上是无定形的,高约180-240 nm,宽约420-540 nm,以及这些结构之间区域中与表面氧化有关的表面变形。在不同的时间范围内对暴露于大气的HfSe-2进行了X射线光电子能谱研究,这表明与Se相比,Hf与氧气发生了优先反应。能量色散X射线光谱显示水泡富含硒。因此,从理论上讲,当HfSe_2在环境中反应时会形成HfO_2,这反过来又导致Se原子以气泡的形式聚集在表面。总体而言,很明显,空气接触会严重影响TMD材料的结构性能。这个问题对未来基于TMD的设备和技术构成了最大的挑战之一。

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  • 来源
    《Journal of Applied Physics 》 |2016年第12期| 125102.1-125102.9| 共9页
  • 作者单位

    Tyndall National Institute, University College Cork, Cork, Ireland;

    School of Physical Sciences, Dublin City University, Dublin 9, Ireland;

    Tyndall National Institute, University College Cork, Cork, Ireland;

    Advanced Microscopy Laboratory, Trinity College Dublin, Dublin, Ireland;

    Tyndall National Institute, University College Cork, Cork, Ireland;

    Tyndall National Institute, University College Cork, Cork, Ireland;

    Tyndall National Institute, University College Cork, Cork, Ireland;

    Tyndall National Institute, University College Cork, Cork, Ireland;

    Tyndall National Institute, University College Cork, Cork, Ireland;

    School of Physical Sciences, Dublin City University, Dublin 9, Ireland;

    School of Physical Sciences, Dublin City University, Dublin 9, Ireland;

    Tyndall National Institute, University College Cork, Cork, Ireland;

    Tyndall National Institute, University College Cork, Cork, Ireland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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