Title :
Au-Induced Directional Growth of Inkjet-Printed 6,13-Bis(triisopropylsilylethynyl) Pentacene
Author :
Xianghua Wang ; Mengzhi Qin ; Miao Yuan ; Xun Gu ; Longzhen Qiu ; Guobing Zhang ; Juntao Hu ; Hongbo Lu ; Guoqiang Lv
Author_Institution :
Nat. Eng. Lab. of Special Display Technol., Hefei Univ. of Technol., Hefei, China
Abstract :
An inkjet printing method for directional crystallization was proposed that employs difference in surface energy to induce film growth with higher crystallinity and orderliness. Inkjet printing of 6,13-bis(triisopropyl- silylethynyl) pentacene, a small-molecule semiconductor was performed as a single-line film with the starting point set on a patch of Au film, which had been surface-treated to have a slightly higher dispersive surface energy than the dielectric substrate. A larger dispersive surface energy on the metal resulted in advanced contact-line pinning thereof between the liquid and the substrate and induced film growth along the printing direction. With the influence of the differential surface energy, larger grain size as well as more convergent crystalline microstructure was obtained, which is beneficial to the fabrication of organic thin-film transistors with improved electrical performance and device-to-device uniformity.
Keywords :
crystallisation; gold; grain size; ink jet printing; organic field effect transistors; organic semiconductors; semiconductor thin films; surface energy; 6,13-bis(triisopropylsilylethynyl) pentacene; Au; Au-induced directional growth; contact-line pinning; convergent crystalline microstructure; crystallinity; device-to-device uniformity; dielectric substrate; directional crystallization; dispersive surface energy; electrical properties; grain size; ink jet printing; organic thin-film transistors; single-line film growth; small-molecule semiconductor; surface treatment; Films; Gold; Morphology; Printing; Substrates; Surface morphology; Thin film transistors; Charge carrier mobility; gold; self-organizing control; semiconductor device;
Journal_Title :
Display Technology, Journal of
DOI :
10.1109/JDT.2015.2409231