2014
DOI: 10.1002/adma.201305416
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Controllable Printing Droplets for High‐Resolution Patterns

Abstract: Inkjet printing has attracted wide attention due to the important applications in fabricating biological, optical, and electrical devices. During the inkjet printing process, the solutes prefer to deposit along the droplet periphery and form an inhomogeneous morphology, known as the coffee-ring effect. Besides, the feature size of printed dots or lines of conventional inkjet printing is usually limited to tens or even hundreds of micrometers. The above two issues greatly restrict the extensive application of p… Show more

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Cited by 408 publications
(296 citation statements)
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“…For example, an empirical effort to validate the regime of fluid "jettability" has been described by Kuang andcolleagues in 2014 (Nallan et al, 2014). Now, the challenge is to translate this fundamental understanding towards advancing IJ-ODF platforms.…”
Section: Inkjet Printing For Personalised Odf Manufacturing: Unmet Needsmentioning
confidence: 99%
“…For example, an empirical effort to validate the regime of fluid "jettability" has been described by Kuang andcolleagues in 2014 (Nallan et al, 2014). Now, the challenge is to translate this fundamental understanding towards advancing IJ-ODF platforms.…”
Section: Inkjet Printing For Personalised Odf Manufacturing: Unmet Needsmentioning
confidence: 99%
“…For high-resolution multicolor displays, mono-layered pixilated devices are a better choice in practice; however, the manual construction is challenging in a lesser-equipped lab. We can employ a recently demonstrated high-resolution digital printing technology 36,39 to complete the pixilated medium engineering tasks and related highresolution multicolor device. Regarding the multi-layered stacked-electrode strategy demonstrated here, its immediate applications may be suitable for medium-or low-resolution multicolor applications, such as a smart window or a large electronic billboard.…”
Section: Design and Synthesis Of The Switchable Moleculementioning
confidence: 99%
“…我们 [49] 在功能纳米材料的可控组装、精细图案化技 术以及印刷电子应用方面开展了一系列广泛而深入的 研究(见图 5). 我们通过调控墨水、基材等打印条件, 成 功制备了一系列特殊结构和图案: 利用"咖啡环"现象 制备线宽可达 5 μm 的金属纳米粒子图案 [50] ; 提出了一 种通过控制液膜破裂实现了多种纳米粒子大面积精确 组装的普适方法, 这种新型图案化技术可以简便地进行 纳米粒子微、纳米尺度图案的精确组装, 可以通过"印 刷"方式大面积制备纳米粒子组装的精细图案和功能器 件, 乃至实现单个纳米粒子的组装与图案化 [51] ; 通过喷 墨打印技术构筑微米尺度的电极图案作为"模板", 控 制纳米材料的组装过程成功制备了最高精度可达 30 nm 的图案, 并实现了柔性电路的应用.…”
Section: 柔性电子传感器的印刷制造unclassified