Photocurrent Characteristics of Solution-Processed Mercury Sulfide Nanoparticles-Thin Films on Plastic Substrates

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초록

In this study, we synthesize mercury sulfide (HgS) nanoparticles (NPs) by the colloidal method and investigate the optoelectronic characteristics of the resulting HgS NPs-thin films on plastic substrates in air at room temperature. The HgS NPs with a size of about 6-nm show quantum confinement effects in the absorption and photoluminescence spectra of the HgS NPs-thin film. The flexible optoelectronic device is constructed with the HgS NPs-thin film on finger-pattered Au electrodes. When 325-nm wavelength light is irradiated on the HgS NPs-thin film, charge carriers are photogenerated and transported by the hopping mechanism, thereby giving birth to a photocurrent in the film. The photocurrent efficiency at a bias voltage of 5 V is estimated to be 1.6 mu A/W . cm(2) and the photocurrent efficiency in the 1000 cycles-bending test changes by less than one order of magnitude compared to its initial value before bending.

키워드

Mercury SulfideNanoparticlesFlexible OptoelectronicsPlastic SubstratePhotocurrent
제목
Photocurrent Characteristics of Solution-Processed Mercury Sulfide Nanoparticles-Thin Films on Plastic Substrates
저자
Kwak, KiyeolCho, KyoungahKim, Sangsig
DOI
10.1166/jnn.2012.6229
발행일
2012-07
유형
Article
저널명
Journal of Nanoscience and Nanotechnology
12
7
페이지
5728 ~ 5731