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Showing results 1 to 10 of 17675 (Search time: 0.0 seconds).

Origin of Enhanced Photoelectrochemical Activity of the n-CdS/p-type Semiconductor Interface: Homojunction or Heterojunction?
  • Chae, Sang Youn;
  • Jun, Minki;
  • Yoon, Noyoung;
  • Joo, Oh Shim;
  • Kim, Jin Young;
  • Park, Eun Duck
  • 2025-01-08
  • Small, Vol.21
  • John Wiley and Sons Inc
Effects of 1,2-ethanedithiol concentration on performance improvement of quantum-dot LEDsoa mark
  • Nguyen, Huu Tuan;
  • Ryu, Shin Young;
  • Duong, Anh Tuan;
  • Lee, Soonil
  • 2019-01-01
  • RSC Advances, Vol.9, pp.38464-38468
  • Royal Society of Chemistry
Investigation the effect of different surface ligand treatments on luminescence and performance of quantum dot LEDs
  • 2021-08-28
  • Journal of Materials Research, Vol.36, pp.3309-3316
  • Springer Nature
Role of CdSe and CdSe@ZnS quantum dots interlayers conjugated in inverted polymer solar cells
  • Park, Young Jae;
  • Lee, Kyu Seung;
  • Lim, Guh Hwan;
  • Seo, Hae Woon;
  • Kim, Sang Wook;
  • Kim, Minju;
  • Yi, Yeonjin;
  • Lee, Hong Seok;
  • Son, Dong Ick
  • 2020-07-01
  • Organic Electronics, Vol.82
  • Elsevier B.V.
Facile fabrication of nanotubular heterostructure for enhanced photoelectrochemical performance
  • Han, Hyun Soo;
  • Park, Woosung;
  • Sivanantham, Arumugam;
  • Hwang, Sung Won;
  • Surendran, Subramani;
  • Sim, Uk;
  • Cho, In Sun
  • 2021-02-01
  • Ceramics International, Vol.47, pp.3972-3977
  • Elsevier Ltd
CdSe/ZnS quantum dot encapsulated MoS2 phototransistor for enhanced radiation hardnessoa mark
  • 2019-12-01
  • Scientific Reports, Vol.9
  • Nature Publishing Group
A nanoscale p–n junction photoelectrode consisting of an NiOx layer on a TiO2/CdS nanorod core-shell structure for highly efficient solar water splitting
  • 2019-08-05
  • Applied Catalysis B: Environmental, Vol.250, pp.200-212
  • Elsevier B.V.
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