Engineering Core Size of InP Quantum Dot with Incipient ZnS for Blue Emission

  • Suh, Yo-Han; 
  • Lee, Sanghyo; 
  • Jung, Sung-Min; 
  • Bang, Sang Yun; 
  • Yang, Jiajie; 
  • ... Lee, Tae Hoon; 
  • 외 9명
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초록

Blue indium phosphide quantum dot (InP QD) is an emerging colloidal semiconductor nanocrystal, considered as a promising next-generation photoactive material for light-emitting purposes. Despite the tremendous progress in blue InP QDs, the synthetic method for tailoring InP core size to realize the blue-emissive QDs still lags behind. This work suggests a synthetic method for blue-emitting InP QDs by engineering the core size with an incipient ZnS (i-ZnS) shell. The formation of i-ZnS complexes, before the tris(trimethylsilyl)phosphine injection (e.g., before core growth process), restrains the overgrowth of InP nuclei by rapidly forming a ZnS shell on its surface, thereby resulting in further dwarfed InP cores. With additional ZnS shell coating, the blue QDs exhibit a photoluminescence quantum yield of approximate to 52% at 483 nm. The origin of bandgap diminution with the increase of shell thickness, or with the utilization of ZnSe shell is unraveled via the first-principles density functional theory simulations. Simulational evidence on InP-core densification with the shell coating, along with accompanying changes in chemical and structural properties, is presented. The blue-emitting InP QD device shows a maximum luminance of 1162 cd m(-2) and external quantum efficiency of 1.4%.

키워드

blue emission; density functional theory modeling; incipient ZnS; indium phosphide quantum dots; quantum dot light-emitting diodes; INP/ZNS NANOCRYSTALS; CLUSTERS
제목
Engineering Core Size of InP Quantum Dot with Incipient ZnS for Blue Emission
저자
Suh, Yo-Han; Lee, Sanghyo; Jung, Sung-Min; Bang, Sang Yun; Yang, Jiajie; Fan, Xiang-Bing; Zhan, Shijie; Samarakoon, Chatura; Jo, Jeong-Wan; Kim, Yoonwoo; Choi, Hyung Woo; Occhipinti, Luigi G.; Lee, Tae Hoon; Shin, Dong-Wook; Kim, Jong Min
DOI
10.1002/adom.202102372
발행일
2022-04
유형
Article
저널명
Advanced Optical Materials
권
10
호
7