Revealing the Self-Doped Nature of CdxAgySe Quantum Dots under Cation Exchange Control

  • "Lee, Jin Hyeok; 
  • Eom, So Young; 
  • Kang, Hyeong Seok; 
  • Song, Haemin; 
  • Jeon, Soeun; 
  • ... Jeong, Kwang Seob; 
  • 외 1명
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초록

"Metal-chalcogenide nanocrystals inevitably experience a state with a nonstoichiometric ratio during their growth. Considering that a few atoms function as dopants, the nonstoichiometric composition can determine the fundamental properties of the materials. Such a stoichiometry change in real time is extremely fast, and thereby, the product lies in an energetically stable state with a stoichiometric integral ratio. The phenomenon becomes dramatic for the cation-exchange reaction. Thus, the cation-exchange reaction with a controllable exchange rate can be an excellent way to generate the unexplored metastable state with a nonstoichiometry where interesting optical and electrical properties appear. Here, we report cation-exchanged CdxAgySe quantum dots (QDs) at a metastable self-doped state exhibiting intraband transition in the mid-wavelength infrared (mid-IR) regime. The state is successfully captured by controlling the reaction rate of the cation exchange and analyzed using short-wavelength and mid-IR photoluminescence spectroscopy under cryo-temperature, transmission electron microscopy, nuclear magnetic resonance, X-ray diffraction analysis, and energy-dispersive X-ray spectroscopy. The electronic mid-IR intraband transition of the cation-exchanged self-doped quantum dots is further confirmed by measuring the infrared photocurrent spectrum of the QD-based infrared sensor. © 2025 American Chemical Society.

키워드

High Resolution Transmission Electron Microscopy; Infrared Detectors; Infrared Radiation; Nanocrystals; Nuclear Magnetic Resonance; Photoluminescence Spectroscopy; Positive Ions; Semiconductor Quantum Dots; X Ray Powder Diffraction; Cation Exchange Reactions; Cation Exchanges; Fundamental Properties; Intraband Transitions; Metal Chalcogenide; Mid-wavelength Infrared; Non-stoichiometric Composition; Non-stoichiometric Ratio; Real- Time; Self-doped; Energy Dispersive Spectroscopy; CRYSTAL-STRUCTURE; TRANSITIONS; PASSIVATION; THICKNESS; NANORODS
제목
Revealing the Self-Doped Nature of CdxAgySe Quantum Dots under Cation Exchange Control
저자
"Lee, Jin Hyeok; Eom, So Young; Kang, Hyeong Seok; Song, Haemin; Jeon, Soeun; Kim, Si Yu; Jeong, Kwang Seob
DOI
10.1021/acs.chemmater.4c03484
발행일
2025-07
유형
Article
저널명
Chemistry of Materials
권
37
호
14
페이지
4992 ~ 5004