| Literature DB >> 27859781 |
Jiadong Zhou1, Fucai Liu1, Junhao Lin2,3,4, Xiangwei Huang5, Juan Xia6, Bowei Zhang1, Qingsheng Zeng1, Hong Wang1, Chao Zhu1, Lin Niu1, Xuewen Wang1, Wei Fu1, Peng Yu1, Tay-Rong Chang7, Chuang-Han Hsu8,9, Di Wu8,9, Horng-Tay Jeng7,10, Yizhong Huang1, Hsin Lin8,9, Zexiang Shen1,6,11, Changli Yang5,12, Li Lu5,12, Kazu Suenaga4, Wu Zhou2, Sokrates T Pantelides2,3, Guangtong Liu5, Zheng Liu1,13,14.
Abstract
Large-area and high-quality 2D transition metal tellurides are synthesized by the chemical vapor deposition method. The as-grown WTe2 maintains two different stacking sequences in the bilayer, where the atomic structure of the stacking boundary is revealed by scanning transmission electron microscopy. The low-temperature transport measurements reveal a novel semimetal-to-insulator transition in WTe2 layers and an enhanced superconductivity in few-layer MoTe2 .Entities:
Keywords: 2D materials; MoTe2; WTe2; chemical vapor deposition
Year: 2016 PMID: 27859781 DOI: 10.1002/adma.201603471
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849