標題: | A Novel Structure to Reduce Degradation Under Mechanical Bending in Foldable Low Temperature Polysilicon TFTs Fabricated on Polyimide |
作者: | Wang, Yu-Xuan Chang, Ting-Chang Huang, Shin-Ping Tai, Mao-Chou Zheng, Yu-Zhe Wu, Chia-Chuan Shih, Yu-Shan Chen, Yu-An Tsai, Yu-Lin Tu, Hong-Yi Lu, I-Nien Zhou, Kuan-Ju Lin, Chih-Chih Chu, Ann-Kuo Sze, Simon 電子工程學系及電子研究所 Department of Electronics Engineering and Institute of Electronics |
關鍵字: | LTPS;mechanical bending stress;wing-shaped structure;a stress relief layer |
公開日期: | 1-May-2020 |
摘要: | In this study, a novel structural device, named as a wing-shaped TFT, is proposed and is demonstrated to prevent fast deterioration under mechanical bending in foldable devices. After long-term mechanical bending, standard low-temperature polysilicon TFTs exhibit instability behaviors such as sub-channel formation, serious threshold voltage shifts, an on-current (I-ON) increase, and an off-current (I-OFF) decrease. These phenomena are believed to be due to additional oxide traps along the channel-width edges of the gate insulator after bending. In order to suppress this degradation, a wing-shaped structure is proposed. By extending the active layer, degradation regions are shifted away from the main channel. Therefore, the reliability of the devices is enhanced. The transfer characteristics show enhanced electrical behavior after being held for 48 hours in a static bent condition, with an 88% drop in threshold voltage shift as well as a 55% decrease in subthreshold swing degradation, proving better durability of the foldable TFT to bending stress for devices with these wings. Time-dependent transfer characteristics, a COMSOL simulation, and device geometry are discussed to support our findings. |
URI: | http://dx.doi.org/10.1109/LED.2020.2979276 http://hdl.handle.net/11536/154314 |
ISSN: | 0741-3106 |
DOI: | 10.1109/LED.2020.2979276 |
期刊: | IEEE ELECTRON DEVICE LETTERS |
Volume: | 41 |
Issue: | 5 |
起始頁: | 725 |
結束頁: | 728 |
Appears in Collections: | Articles |