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Growth mechanism of vertically aligned SnSe nanosheets via physical vapour deposition

Authors
Ma, Xing-HuaCho, Ki-HyunSung, Yun-Mo
Issue Date
2014
Publisher
ROYAL SOC CHEMISTRY
Citation
CRYSTENGCOMM, v.16, no.23, pp.5080 - 5086
Indexed
SCIE
SCOPUS
Journal Title
CRYSTENGCOMM
Volume
16
Number
23
Start Page
5080
End Page
5086
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/101016
DOI
10.1039/c4ce00213j
ISSN
1466-8033
Abstract
Vertically aligned SnSe nanosheets were successfully synthesized on different substrates (silicon, quartz, and fluorine-doped tin oxide glass) via a non-catalytic vapour phase synthesis method for the first time. Such substrate independent feature could benefit the fabrication and application of various nanodevices due to the considerably enhanced surface area. The SnSe nanosheets have the thickness of similar to 20-30 nm and the lateral dimension of several micrometers. The analyses using X-ray diffraction and high-resolution transmission electron microscopy demonstrate that the nanosheets are single crystalline with an ortho-rhombic crystal structure of the Pnma 62 space group. Two-dimensional nanosheets were formed due to the anisotropic atomic bonding nature of the SnSe crystal, which is apparently different from the oriented attachment growth or the exposed plane suppressing growth. They also revealed faceted edge planes, which was elucidated in detail based upon the difference in the surface energy of each atomic plane. SnSe nanosheets show a direct band gap of similar to 1.1 eV, ideally meeting the requirements as high-performance light absorbing materials for solar cell applications.
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공과대학 (신소재공학부)
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