Title :
Solution-Processed Low-Operating-Voltage Thin-Film Transistors With Bottom-Gate Top-Contact Structure
Author :
Xifeng Li ; Leyong Zhu ; Yana Gao ; Jianhua Zhang
Author_Institution :
Key Lab. of Adv. Display & Syst. Applic., Shanghai Univ., Shanghai, China
Abstract :
It was demonstrated that low-operating-voltage bottom-gate top-contact (BGTC) structure thin-film transistors (TFTs) were fabricated using solution-processed amorphous zinc indium tin oxide (ZITO) and hafnium aluminum oxide (HAO) films. Due to the excellent chemical stability of ZITO film and high etching selectivity between ZITO and indium tin oxide (or between ZITO and Mo), the manufacture of BGTC structure requires only traditional lithography and wet etching. The usage of high-k HAO films lowered the operating voltage (below 2 V) of the TFT devices. TFT devices based on ZITO and HAO films annealing at 500 °C showed a saturated field-effect mobility of 13.5 cm2V-1s-1, a small subthreshold swing of 87 mV/decade, a large ON-to-OFF current ratio of 7.2 × 106, and a threshold voltage of -0.6 V. The hysteresis (0.14 V) of TFT devices confirmed further that the ZITO and HAO films could be the promising candidates for TFT devices.
Keywords :
annealing; electrical contacts; etching; field effect transistors; hafnium compounds; indium compounds; lithography; thin film transistors; wetting; zinc compounds; BGTC structure; HAO film; HfAlO; TFT device; ZITO; ZnInSnO; annealing; bottom-gate top-contact structure; chemical stability; etching selectivity; hafnium aluminum oxide film; large ON-to-OFF current ratio; lithography; saturated field-effect mobility; solution-processed amorphous zinc indium tin oxide; solution-processed low-operating-voltage thin-film transistor; temperature 500 degC; voltage 0.14 V; voltage 0.6 V; wet etching; Annealing; Capacitance; Dielectrics; Etching; Indium tin oxide; Logic gates; Thin film transistors; Bottom gate top contact (BGTC); hafnium aluminum oxide (HAO); low voltage; solution process; thin-film transistors (TFTs); zinc indium tin oxide (ZITO); zinc indium tin oxide (ZITO).;
Journal_Title :
Electron Devices, IEEE Transactions on
DOI :
10.1109/TED.2015.2394325