Author:
Pickering S.,Kshirsagar A.,Ruzyllo J.,Xu J.
Abstract
AbstractIn this experiment a technique of mist deposition was explored as a way to form patterned ultra-thin-films of CdSe/ZnS core/shell nanocrystalline quantum dots using colloidal solutions. The objective of this study was to investigate the feasibility of mist deposition as a patterning method for creating multicolour quantum dot light emitting diodes. Mist deposition was used to create three rows of quantum dot light emitting diodes on a single device with each row having a separate colour. The colours chosen were red, green and yellow with corresponding peak wavelengths of 620 nm, 558 nm, and 587 nm. The results obtained from this experiment show that it is possible to create multicolour devices on a single substrate. The peak brightnesses obtained in this experiment for the red, green, and yellow were 508 cd/m, 507 cd/m, and 665 cd/m, respectively. The similar LED brightness is important in display technologies using colloidal quantum dots in a precursor solution to ensure one colour does not dominate the emitted spectrum. Results obtained in-terms of brightness were superior to those achieved with inkjet deposition. This study has shown that mist deposition is a viable method for patterned deposition applied to quantum dot light emitting diode display technologies.
Subject
Electrical and Electronic Engineering,Radiation,General Materials Science
Reference9 articles.
1. Colloidal nano crystal based light emitting diodes fabricated on plastic to ward flexible quantum dot optoelectronics;Tan;Appl Phys
2. Mist fabrication of light emitting diodes with colloidal na nocrystal;Zhu;Appl Phys Lett,2008
3. Inkjet printed RGB quantum dot hybrid LED Ink jet printing of doped polymers for organic light emit ting devices Multicolour organic light emitting diodes processed by hybrid inkjet printing;Haverinen;Disp Technol Appl Phys Lett Mater,2009
4. Mist deposited high k dielectrics for next generation MOS gates;Lee;Solid State Electron,2002
5. Studies of mist deposition for the formation of quantum dot CdSe films;Price;Semicond Sci Tech,2009
Cited by
26 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献