- The Effect of Surface Defects on the Optical Properties of ZnSe:Eu Quantum Dots
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Da-Woon Jeong, Ji Young Park, Han Wook Seo, Kyoung-Mook Lim, Tae-Yeon Seong, Bum Sung Kim
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J Korean Powder Metall Inst. 2016;23(5):348-352. Published online October 1, 2016
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DOI: https://doi.org/10.4150/KPMI.2016.23.5.348
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Abstract
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Quantum dots (QDs) are capable of controlling the typical emission and absorption wavelengths because of the bandgap widening effect of nanometer-sized particles. These phosphor particles have been used in optical devices, photovoltaic devices, advanced display devices, and several biomedical complexes. In this study, we synthesize ZnSe QDs with controlled surface defects by a heating-up method. The optical properties of the synthesized particles are analyzed using UV-visible and photoluminescence (PL) measurements. Calculations indicate nearly monodisperse particles with a size of about 5.1 nm at 260°C (full width at half maximum = 27.7 nm). Furthermore, the study results confirm that successful doping is achieved by adding Eu3+ preparing the growth phase of the ZnSe:Eu QDs when heating-up method. Further, we investigate the correlation between the surface defects and the luminescent properties of the QDs.
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- An investigation into the effective surface passivation of quantum dots by a photo-assisted chemical method
So-Yeong Joo, Hyun-Su Park, Do-yeon Kim, Bum-Sung Kim, Chan Gi Lee, Woo-Byoung Kim AIP Advances.2018;[Epub] CrossRef - Multimodal luminescence properties of surface-treated ZnSe quantum dots by Eu
Ji Young Park, Da-Woon Jeong, Kyoung-Mook Lim, Yong-Ho Choa, Woo-Byoung Kim, Bum Sung Kim Applied Surface Science.2017; 415: 8. CrossRef
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