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Two-Dimensional Palladium Diselenide with Strong In-Plane Optical Anisotropy and High Mobility Grown by Chemical Vapor Deposition

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Title
Two-Dimensional Palladium Diselenide with Strong In-Plane Optical Anisotropy and High Mobility Grown by Chemical Vapor Deposition
Author(s)
Yiyi Gu; Hui Cai; Jichen Dong; Yiling Yu; Anna N. Hoffman; Chenze Liu; Akinola D. Oyedele; Yu-Chuan Lin; Zhuozhi Ge; Alexander A. Puretzky; Gerd Duscher; Matthew F. Chisholm; Philip D. Rack; Christopher M. Rouleau; Zheng Gai; Xiangmin Meng; Feng Ding; David B. Geohegan; Kai Xiao
Publication Date
2020-03
Journal
Advanced Materials, v.32, no.19, pp.1 - 10
Publisher
WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
Abstract
KGaA, WeinheimTwo-dimensional (2D) palladium diselenide (PdSe2) has strong interlayer coupling and a puckered pentagonal structure, leading to remarkable layer-dependent electronic structures and highly anisotropic in-plane optical and electronic properties. However, the lack of high-quality, 2D PdSe2 crystals grown by bottom-up approaches limits the study of their exotic properties and practical applications. In this work, chemical vapor deposition growth of highly crystalline few-layer (≥2 layers) PdSe2 crystals on various substrates is reported. The high quality of the PdSe2 crystals is confirmed by low-frequency Raman spectroscopy, scanning transmission electron microscopy, and electrical characterization. In addition, strong in-plane optical anisotropy is demonstrated via polarized Raman spectroscopy and second-harmonic generation maps of the PdSe2 flakes. A theoretical model based on kinetic Wulff construction theory and density functional theory calculations is developed and described the observed evolution of “square-like” shaped PdSe2 crystals into rhombus due to the higher nucleation barriers for stable attachment on the (1,1) and (1,−1) edges, which results in their slower growth rates. Few-layer PdSe2 field-effect transistors reveal tunable ambipolar charge carrier conduction with an electron mobility up to ≈294 cm2 V−1 s−1, which is comparable to that of exfoliated PdSe2, indicating the promise of this anisotropic 2D material for electronics
URI
https://pr.ibs.re.kr/handle/8788114/9009
DOI
10.1002/adma.201906238
ISSN
0935-9648
Appears in Collections:
Center for Multidimensional Carbon Materials(다차원 탄소재료 연구단) > 1. Journal Papers (저널논문)
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