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Diameter-controlled and surface-modified Sb?Se? nanowires and their photodetector performance.


ABSTRACT: Due to its direct and narrow band gap, high chemical stability, and high Seebeck coefficient (1800??VK(-1)), antimony selenide (Sb2Se3) has many potential applications, such as in photovoltaic devices, thermoelectric devices, and solar cells. However, research on the Sb2Se3 materials has been limited by its low electrical conductivity in bulk state. To overcome this challenge, we suggest two kinds of nano-structured materials, namely, the diameter-controlled Sb2Se3 nanowires and Ag2Se-decorated Sb2Se3 nanowires. The photocurrent response of diameter-controlled Sb2Se3, which depends on electrical conductivity of the material, increases non-linearly with the diameter of the nanowire. The photosensitivity factor (K = I(light)/I(dark)) of the intrinsic Sb2Se3 nanowire with diameter of 80-100?nm is highly improved (K = 75). Additionally, the measurement was conducted using a single nanowire under low source-drain voltage. The dark- and photocurrent of the Ag2Se-decorated Sb2Se3 nanowire further increased, as compared to that of the intrinsic Sb2Se3 nanowire, to approximately 50 and 7 times, respectively.

SUBMITTER: Choi D 

PROVIDER: S-EPMC4205837 | biostudies-other | 2014

REPOSITORIES: biostudies-other

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Diameter-controlled and surface-modified Sb₂Se₃ nanowires and their photodetector performance.

Choi Donghyeuk D   Jang Yamujin Y   Lee JeeHee J   Jeong Gyoung Hwa GH   Whang Dongmok D   Hwang Sung Woo SW   Cho Kyung-Sang KS   Kim Sang-Wook SW  

Scientific reports 20141022


Due to its direct and narrow band gap, high chemical stability, and high Seebeck coefficient (1800 μVK(-1)), antimony selenide (Sb2Se3) has many potential applications, such as in photovoltaic devices, thermoelectric devices, and solar cells. However, research on the Sb2Se3 materials has been limited by its low electrical conductivity in bulk state. To overcome this challenge, we suggest two kinds of nano-structured materials, namely, the diameter-controlled Sb2Se3 nanowires and Ag2Se-decorated  ...[more]

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