Optimizing Annealing Temperature for Enhanced Electrical Performance and Stability of Solution-Processed In2O3 Thin-Film Transistors

  • Kim, Taehui; 
  • Lee, Seullee; 
  • Lee, Ye-Won; 
  • Kim, Dongwook; 
  • Yun, Youngjun; 
  • ... Bae, Jin-Hyuk; 
  • 외 2명
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초록

This study investigates the influence of post-deposition thermal annealing temperature on the crystal structure, chemical composition, and electrical performance of solution-processed indium oxide (In2O3) thin films. Based on thermogravimetric analysis (TGA) of the precursor solution, annealing temperatures of 350, 450, and 550 degrees C were adopted. The resulting In2O3 films were characterized using ultraviolet-visible (UV-Vis) spectroscopy, atomic force microscopy (AFM), Raman spectroscopy, and Hall-effect measurements to evaluate their optical, morphological, crystalline polymorphism, and electrical properties. The results revealed that the film annealed at 450 degrees C exhibited a field-effect mobility of 4.28 cm2/V<middle dot>s and an on/off current ratio of 2.15 x 107. The measured hysteresis voltages were 3.11, 1.80, and 0.92 V for annealing temperatures of 350, 450, and 550 degrees C, respectively. Altogether, these findings indicate that an annealing temperature of 450 degrees C provides an optimal balance between the electrical performance and device stability for In2O3-based thin-film transistors (TFTs), making this condition favourable for high-performance oxide electronics.

키워드

indium oxide; thin-film transistor; solution-processed; Raman-spectroscopy; thermal annealing; hysteresis; OPTICAL-PROPERTIES
제목
Optimizing Annealing Temperature for Enhanced Electrical Performance and Stability of Solution-Processed In2O3 Thin-Film Transistors
저자
Kim, Taehui; Lee, Seullee; Lee, Ye-Won; Kim, Dongwook; Yun, Youngjun; Bae, Jin-Hyuk; Lee, Hyeonju; Park, Jaehoon
DOI
10.3390/mi16101091
발행일
2025-09-26
유형
Article
저널명
Micromachines
권
16
호
10