Back to Search Start Over

All-inkjet-printed thin-film transistors: manufacturing process reliability by root cause analysis

Authors :
Technische Universität Chemnitz
Sowade, Enrico
Ramon, Eloi
Mitra, Kalyan Yoti
Martínez-Domingo, Carme
Pedró, Marta
Pallarès, Jofre
Loffredo, Fausta
Villani, Fulvia
Gomes, Henrique L.
Terés, Lluís
Baumann, Reinhard R.
Technische Universität Chemnitz
Sowade, Enrico
Ramon, Eloi
Mitra, Kalyan Yoti
Martínez-Domingo, Carme
Pedró, Marta
Pallarès, Jofre
Loffredo, Fausta
Villani, Fulvia
Gomes, Henrique L.
Terés, Lluís
Baumann, Reinhard R.
Source :
Scientific Reports 6, Article number: 33490 (2016) doi:10.1038/srep33490
Publication Year :
2016

Abstract

We report on the detailed electrical investigation of all-inkjet-printed thin-film transistor (TFT) arrays focusing on TFT failures and their origins. The TFT arrays were manufactured on flexible polymer substrates in ambient condition without the need for cleanroom environment or inert atmosphere and at a maximum temperature of 150 °C. Alternative manufacturing processes for electronic devices such as inkjet printing suffer from lower accuracy compared to traditional microelectronic manufacturing methods. Furthermore, usually printing methods do not allow the manufacturing of electronic devices with high yield (high number of functional devices). In general, the manufacturing yield is much lower compared to the established conventional manufacturing methods based on lithography. Thus, the focus of this contribution is set on a comprehensive analysis of defective TFTs printed by inkjet technology. Based on root cause analysis, we present the defects by developing failure categories and discuss the reasons for the defects. This procedure identifies failure origins and allows the optimization of the manufacturing resulting finally to a yield improvement.

Details

Database :
OAIster
Journal :
Scientific Reports 6, Article number: 33490 (2016) doi:10.1038/srep33490
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1135763679
Document Type :
Electronic Resource