Single and Dual Doping of Blue-Emissive ZnSeTe Quantum Dots with Transition Metal Ions

  • Song, Seung-Won
  • Lee, Sun-Hyoung
  • Jo, Dae-Yeon
  • Yoon, Suk-Young
  • Kim, Hyun-Min
  • ... Yang, Heesun
  • 외 4명
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초록

Doping particularly with transition metal ions is an effectual means to modulate photoluminescence (PL) of quantum dots (QDs). The precedent doped QDs rely primarily on single doping with either Cu+ or Mn2+ into the most common host compositions of (Zn)CdS, ZnSe, and InP, with little success on co-doping with both impurities enabling their simultaneous emissions. Herein, single and dual doping are explored with Cu+ and/or Mn2+ into blue-emissive ZnSeTe QDs. PL of the singly doped ZnSeTe QDs synthesized via a co-nucleation process, comprising host and dopant emissions, is spectrally tuned by varying the concentration of each dopant. For the effective dual doping toward co-emergence of both dopant-related emissions, a two-step doping strategy, where co-nucleation doping of Mn2+ is temporally decoupled from diffusion doping of Cu+, is devised. In the resulting co-doped ZnSeTe QDs, successfully showing three distinct emission components, the relative spectral distribution of triple emissions is readily modulated by individually adjusting Cu and Mn concentrations, producing color-quality tunable white emissions. Upon elaborate multishelling, the co-doped QDs display outstanding PL quantum yields of 72-75%. Singly and dually doped QDs are further applied for the fabrication of QD light-emitting diodes, and their electroluminescence is examined compared to PL.

키워드

dopingelectroluminescencetransition metal ionswhite emissionZnSeTe quantum dotsNANOCRYSTAL EMITTERSEFFICIENTPHOTOLUMINESCENCEMANGANESEBRIGHTMN2+
제목
Single and Dual Doping of Blue-Emissive ZnSeTe Quantum Dots with Transition Metal Ions
저자
Song, Seung-WonLee, Sun-HyoungJo, Dae-YeonYoon, Suk-YoungKim, Hyun-MinKim, YuriHan, Jee-NaLee, Young-JuDo, Young RagYang, Heesun
DOI
10.1002/adom.202101767
발행일
2022-01-18
유형
Article
저널명
Advanced Optical Materials
10
2