光探测
材料科学
异质结
表面等离子共振
光电子学
吸收(声学)
等离子体子
兴奋剂
红外线的
纳米技术
化学气相沉积
光电探测器
光学
纳米颗粒
物理
复合材料
作者
Bok Ki Min,Van‐Tam Nguyen,Seong Jun Kim,Yoonsik Yi,Choon‐Gi Choi
标识
DOI:10.1021/acsami.9b18148.s001
摘要
The
development of MoS2 with two- or three-dimensional
heterostructures can provide a significant breakthrough for the enhancement
of photodetection abilities such as increase in light absorption and
expanding the detection ranges. Till date, although the synthesis
of a MoS2 layer with three-dimensional nanostructures using
a chemical vapor deposition (CVD) process has been successfully demonstrated,
most studies have concentrated on electrochemical applications that
utilize structural strengths, for example, a large specific surface
area and electrochemically active sites. Here, for the first time,
we report spectral light absorption induced by plasmon resonances
in single-layer MoS2 (SL-MoS2) with vertically
aligned nanoflakes grown by a CVD process. Treatment with oxygen plasma
results in the formation of a substoichiometric phase of MoOx in the vertical nanoflakes, which exhibit a high
electron density of 4.5 × 1013 cm–2. The substoichiometric MoOx with a high
electron-doping level that is locally present on the SL-MoS2 surface induces an absorption band in the near-infrared (NIR) wavelength
range of 1000–1750 nm because of the plasmon resonances. Finally,
we demonstrate the enhancement of photodetection ability by broadening
the detection range from the visible region to the NIR region in oxygen-treated
SL-MoS2 with vertically aligned nanoflakes.
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