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Antimonene: Van der Waals Heteroepitaxial Growth of Monolayer Sb in a Puckered Honeycomb Structure (Adv. Mater. 5/2019)
Advanced Materials ( IF 27.4 ) Pub Date : 2019-02-01 , DOI: 10.1002/adma.201970035
Zhi-Qiang Shi 1 , Huiping Li 2, 3 , Qian-Qian Yuan 1 , Ye-Heng Song 1 , Yang-Yang Lv 4 , Wei Shi 1 , Zhen-Yu Jia 1 , Libo Gao 1 , Yan-Bin Chen 1 , Wenguang Zhu 2, 3 , Shao-Chun Li 1, 5
Affiliation  

In article number 1806130, Wenguang Zhu, Shao‐Chun Li, and co‐workers describe the fabrication of monolayer α‐phase antimonene, a structural analog to black phosphorous, on a WTe2 substrate by molecular beam epitaxy. The α‐antimonene exhibits great stability upon exposure to air. Its electron band, crossing the Fermi level, exhibits a linear dispersion with a fairly small effective mass, and thus, a good electrical conductivity. All of these properties make α‐antimonene promising for future electronic applications.
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中文翻译:

锑:皱褶蜂窝结构中单层锑的范德华异质外延生长(Adv。Mater.5 / 2019)

在文章1806130中,朱文光,李少春及其同事描述了通过分子束外延在WTe 2衬底上制备单层α相锑烯(一种与黑磷类似的结构)的方法。暴露于空气中时,α-锑烯具有很高的稳定性。它的电子带穿过费米能级,呈现出线性分散,有效质量非常小,因此具有良好的导电性。所有这些特性使α-锑烯有望用于未来的电子应用。
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更新日期:2019-02-01
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