Sequential surface tailoring from colloid to solid in Ag2Te colloidal quantum dots enables high hole mobility and efficient shortwave infrared photodetection

  • Sharma, Abhishek
  • Yoo, Doheon
  • Kim, Ha-Neul
  • Choi, Min-Jae
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초록

Silver telluride (Ag2Te) colloidal quantum dots (CQDs) are promising semiconducting materials for infrared detection due to their environmentally friendly composition and tunable optical bandgap in the shortwave infrared region. However, a limited understanding of surface chemistry in Ag2Te CQDs compared to conventional II-VI and IV-VI CQD systems has hindered advancements in device performance. In this study, we present sequential surface tailoring of Ag2Te CQDs to achieve high-mobility CQD solids. This approach involves the use of a co-ligand system during colloidal synthesis to enhance ligand density and improve surface passivation, followed by iodide solid-state ligand exchange to fabricate all-inorganic Ag2Te CQD solids. As a result, the CQD solids exhibited the highest hole mobility of 3.78 cm2 V−1 s−1 among reported CQD solids. Furthermore, the enhanced carrier mobility, combined with the reduced dark current of these CQD solids, enabled photodetectors to achieve a responsivity of 27.6 mA/W under 1550 nm irradiation. © 2025 Elsevier Ltd

키워드

Ag<sub>2</sub>Te colloidal quantum dotsHole mobilityPhotodetectorsSequential surface tailoringShortwave infraredSOLAR-CELLSCARRIER MOBILITYPBSEPERFORMANCE
제목
Sequential surface tailoring from colloid to solid in Ag2Te colloidal quantum dots enables high hole mobility and efficient shortwave infrared photodetection
저자
Sharma, AbhishekYoo, DoheonKim, Ha-NeulChoi, Min-Jae
DOI
10.1016/j.nanoen.2025.111091
발행일
2025-08
유형
Article
저널명
Nano Energy
141
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1 ~ 8