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Suh, Joonki
Semiconductor Nanotechnology Lab.
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Black Arsenic: A Layered Semiconductor with Extreme In-Plane Anisotropy

Author(s)
Chen, YabinChen, ChaoyuKealhofer, RobertLiu, HuiliYuan, ZhiquanJiang, LiliSuh, JoonkiPark, JoonsukKo, ChanghyunChoe, Hwan SungAvila, JoseZhong, MianzengWei, ZhongmingLi, JingboLi, ShushenGao, HongjunLiu, YunqiAnalytis, JamesXia, QinglinAsensio, Maria C.Wu, Junqiao
Issued Date
2018-07
DOI
10.1002/adma.201800754
URI
https://scholarworks.unist.ac.kr/handle/201301/27079
Fulltext
https://onlinelibrary.wiley.com/doi/full/10.1002/adma.201800754
Citation
ADVANCED MATERIALS, v.30, no.30, pp.1800754
Abstract
2D layered materials have emerged in recent years as a new platform to host novel electronic, optical, or excitonic physics and develop unprecedented nanoelectronic and energy applications. By definition, these materials are strongly anisotropic between the basal plane and cross the plane. The structural and property anisotropies inside their basal plane, however, are much less investigated. Black phosphorus, for example, is a 2D material that has such in-plane anisotropy. Here, a rare chemical form of arsenic, called black-arsenic (b-As), is reported as a cousin of black phosphorus, as an extremely anisotropic layered semiconductor. Systematic characterization of the structural, electronic, thermal, and electrical properties of b-As single crystals is performed, with particular focus on its anisotropies along two in-plane principle axes, armchair (AC) and zigzag (ZZ). The analysis shows that b-As exhibits higher or comparable electronic, thermal, and electric transport anisotropies between the AC and ZZ directions than any other known 2D crystals. Such extreme in-plane anisotropies can potentially implement novel ideas for scientific research and device applications.
Publisher
WILEY-V C H VERLAG GMBH
ISSN
0935-9648
Keyword (Author)
2Danisotropyblack arseniclayered semiconductors
Keyword
FIELD-EFFECT TRANSISTORSPHOSPHORUSGRAPHENESOLIDS

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