论文标题

通过电子显微镜照亮WS $ _2 $多型的电子特性

Illuminating the electronic properties of WS$_2$ polytypism with electron microscopy

论文作者

van Heijst, Sabrya E., Mukai, Masaki, Okunishi, Eiji, Hashiguchi, Hiroki, Roest, Laurien I., Maduro, Louis, Rojo, Juan, Conesa-Boj, Sonia

论文摘要

定制分层材料的特定堆叠序列(多型)代表了识别和设计新型物理特性的有力策略。尽管已常规研究了基于具有2H或3R晶体相的过渡金属二盐(TMD)(TMDS)建立的纳米结构,但我们对基于混合2H/3R多型混合的知识的了解更加有限。在这里,我们报告了混合2H/3R独立的WS $ _2 $纳米结构的表征,该纳米结构通过高级传输电子显微镜显示出类似花的配置。我们将它们丰富的形状形态组合与相关的局部电子特性(例如边缘,表面和散装等离子)相关联。电子损失光谱与机器学习结合表明,2H/3R PolyType显示了一个间接带隙,其中$ e _ {\ rm bg} = 1.6^{+0.3} _ { - 0.2} _ { - 0.2}〜{\ rm rm ev} $。此外,我们确定了以损失比率$ i_g/i_l> 1 $为特征的鳗鱼光谱中能量增益峰的存在。可以利用此类属性来制定新颖的冷却策略,以针对其构建的原子较薄的TMD纳米结构和设备。我们的结果代表了基于混合晶相的TMDS纳米结构的改善理解的垫脚石。

Tailoring the specific stacking sequences (polytypes) of layered materials represents a powerful strategy to identify and design novel physical properties. While nanostructures built upon transition-metal dichalcogenides (TMDs) with either the 2H or 3R crystalline phases have been routinely studied, our knowledge of those based on mixed 2H/3R polytypes is far more limited. Here we report on the characterization of mixed 2H/3R free-standing WS$_2$ nanostructures displaying a flower-like configuration by means of advanced transmission electron microscopy. We correlate their rich variety of shape-morphology combinations with relevant local electronic properties such as their edge, surface, and bulk plasmons. Electron energy-loss spectroscopy combined with machine learning reveals that the 2H/3R polytype displays an indirect band gap with $E_{\rm BG}=1.6^{+0.3}_{-0.2}~{\rm eV}$. Further, we identify the presence of energy-gain peaks in the EEL spectra characterized by a gain-to-loss ratio $I_G/I_L>1$. Such property could be exploited to develop novel cooling strategies for atomically thin TMD nanostructures and devices built upon them. Our results represent a stepping stone towards an improved understanding of TMDs nanostructures based on mixed crystalline phases.

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