Retention framework for analysing trapping dynamics in solution-processed metal-oxide semiconductors

  • Kim, Dongwook; 
  • Lee, Hyeonju; 
  • Shin, Hyunji; 
  • Yun, Youngjun; 
  • Bae, Jin-Hyuk; 
  • 외 1명
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초록

The recovery lifetime postponement mechanism in solution-processed (SP) indium zinc oxide (IZO) thin-film transistors (TFTs) is analytically formulated under thermal and photo-annealing conditions. A quantitative density of states (DOS) model is employed to analyse charge transport dynamics and the impact of In molarity ratios on the retention lifetime and electrical stability. The photo-retention characteristics of IZO TFTs were examined during photo-annealing, showing that higher In molarity concentrations extend the retention lifetime. To quantify this behaviour, a recovery lifetime estimation method based on post-annealing and DOS distributions is proposed. A DOS-energy diagram describing the charge transition mechanism and its relationship with the atomic structure of SP IZO semiconductors is developed. A trade-off between the prolonged retention lifetime and recovery capability with increasing In molarity is noted. This work provides a detailed framework for understanding retention lifetime dynamics, stability, and performance of SP IZO TFTs, offering insights for their widespread application in sensor devices.

키워드

THIN-FILM TRANSISTORS; ELECTRICAL PERFORMANCE; ANALYTIC MODEL; STABILITY
제목
Retention framework for analysing trapping dynamics in solution-processed metal-oxide semiconductors
저자
Kim, Dongwook; Lee, Hyeonju; Shin, Hyunji; Yun, Youngjun; Bae, Jin-Hyuk; Park, Jaehoon
DOI
10.1038/s41427-025-00623-6
발행일
2025-11-07
유형
Article
저널명
NPG Asia Materials
권
17
호
1