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Inkjet printing for electroluminescent devices: emissive materials, film formation, and display prototypes 被引量:6
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作者 Luhua LAN Jianhua ZOU +3 位作者 Congbiao JIANG Benchang LIU Lei WANG Junbiao PENG 《Frontiers of Optoelectronics》 EI CSCD 2017年第4期329-352,共24页
Inkjet priming (IJP) is a versatile technique for realizing high-accuracy patterns in a cost-effective manner. It is considered to be one of the most promising candidates to replace the expensive thermal evaporation... Inkjet priming (IJP) is a versatile technique for realizing high-accuracy patterns in a cost-effective manner. It is considered to be one of the most promising candidates to replace the expensive thermal evaporation technique, which is hindered by the difficulty of fabricating low-cost, large electroluminescent devices, such as organic light- emitting diodes (OLEDs) and quantum dot light-emitting diodes (QLEDs). In this invited review, we first introduce the recent progress of some printable emissive materials, including polymers, small molecules, and inorganic colloidal quantum dot emitters in OLEDs and QLEDs. Subsequently, we focus on the key factors that influence film formation. By exploring stable ink formulation, selecting print parameters, and implementing droplet deposition control, a uniform film can be obtained, which in turn improves the device performance. Finally, a series of impressive inkjet-printed OLEDs and QLEDs prototype display panels are summarized, suggesting a promising future for IJP in the fabrication of large and high-resolution flat panel displays. 展开更多
关键词 inkjet printing ijp inks system film forma-tion organic lightemitting diodes (OLEDs) quantum dotlight-emitting diodes (QLEDs)
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喷墨打印技术在超级电容器中的研究进展
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作者 赵忠银 姚俊 潘竞萍 《电池》 CAS 北大核心 2023年第5期577-581,共5页
与传统的制造方案相比,喷墨打印(IJP)技术具有无接触的高分辨率图案化能力,低成本、可控的材料沉积,工艺简单,以及与多种基材的兼容性等优点。目前,可利用IJP技术开发超级电容器材料。为进一步扩展材料设计策略并加速技术发展,深入了解... 与传统的制造方案相比,喷墨打印(IJP)技术具有无接触的高分辨率图案化能力,低成本、可控的材料沉积,工艺简单,以及与多种基材的兼容性等优点。目前,可利用IJP技术开发超级电容器材料。为进一步扩展材料设计策略并加速技术发展,深入了解IJP超级电容器的发展趋势,对IJP技术的基本原理进行概述,系统总结和讨论电容储能器件IJP的成果,重点介绍电极材料的设计和电容性能及集电器中的应用,并提出发展先进IJP超级电容器的现有挑战和未来研究趋势。 展开更多
关键词 喷墨打印(ijp) 超级电容器 储能 电极材料
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