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基于电流体力学的微喷印技术参数实验研究 被引量:1
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作者 谭姣姣 唐正宁 王奇 《中国印刷与包装研究》 CAS 2013年第2期41-45,65,共6页
基于电流体力学的微喷印技术是一种可用于制造微纳米结构及器件的新型印刷电子技术。本研究首先讨论了微喷印系统喷嘴尖端的泰勒锥弯液面分别在直流偏压和脉冲电压与直流偏压叠加作用下的受力情况,推知作用在弯液面的电场切向应力比电... 基于电流体力学的微喷印技术是一种可用于制造微纳米结构及器件的新型印刷电子技术。本研究首先讨论了微喷印系统喷嘴尖端的泰勒锥弯液面分别在直流偏压和脉冲电压与直流偏压叠加作用下的受力情况,推知作用在弯液面的电场切向应力比电场法向应力增长快,电场切向应力对射流的形成有助"推"作用。其次重点考察脉冲电压频率与射流液滴间隔、液滴喷射频率、液滴直径的关系,并将理论结果与实验结果进行比较分析。最后通过分析得出,在一定条件下,合理控制脉冲频率可以获得具有相同液滴间距和所需尺寸的液滴。 展开更多
关键词 电流体力学 刷电子技术 微喷印 参数
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光固化P(St-HEA)胶体微球喷印液的制备及其应用 被引量:2
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作者 赖伟根 郭勇 +3 位作者 吴钰 李慧 周岚 刘国金 《现代纺织技术》 2020年第3期60-66,共7页
以聚(苯乙烯-丙烯酸羟乙酯)(P(St-HEA))胶体微球分散液为主体,通过复配功能单体丙烯酸羟乙酯(HEA)和紫外光引发剂2-羟基-2-甲基苯丙酮(1173)来构建光固化胶体微球喷印液体系,探究胶体微球、功能单体和光引发剂的质量分数对喷印制备所得... 以聚(苯乙烯-丙烯酸羟乙酯)(P(St-HEA))胶体微球分散液为主体,通过复配功能单体丙烯酸羟乙酯(HEA)和紫外光引发剂2-羟基-2-甲基苯丙酮(1173)来构建光固化胶体微球喷印液体系,探究胶体微球、功能单体和光引发剂的质量分数对喷印制备所得光子晶体结构生色效果的影响;将光固化胶体微球喷印液通过数码喷印设备喷射于涤纶基材上,制备光子晶体结构生色图案,并通过水洗试验测试光子晶体生色结构的稳固性。结果表明:当P(St-HEA)胶体微球的质量分数为1.0%,HEA体积分数为1.0%~1.5%,光引发剂1173质量分数为1.0%时,经数码喷印后可获得结构色鲜艳明亮的光子晶体结构生色图案,且随喷印液中微球粒径的增大,结构色色相会发生红移;通过超声水洗测试,P(St-HEA)光子晶体生色结构在基材上未发生明显脱落,且结构色依旧较为亮丽,表明光固化P(St-HEA)胶体微球喷印液制备所得光子晶体生色结构的稳固性良好。 展开更多
关键词 光子晶体 结构色 光固化 胶体 稳固性
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Direct writing of graphene patterns and devices on graphene oxide films by inkjet reduction 被引量:1
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作者 Yang Su Shuai Jia Jinhong Du Jiangtan Yuan Chang Liu Wencai Ren Huiming Cheng 《Nano Research》 SCIE EI CAS CSCD 2015年第12期3954-3962,共9页
Direct writing of graphene patterns and devices may significantly facilitate the application of graphene-based flexible electronics. In terms of scalability and cost efficiency, inkjet printing is very competitive ove... Direct writing of graphene patterns and devices may significantly facilitate the application of graphene-based flexible electronics. In terms of scalability and cost efficiency, inkjet printing is very competitive over other existing direct- writing methods. However, it has been challenging to obtain highly stable and clog-free graphene-based ink. Here, we report an alternative and highly efficient technique to directly print a reducing reagent on graphene oxide film to form conductive graphene patterns. By this "inkjet reduction" method, without using any other microfabrication technique, conductive graphene patterns and devices for various applications are obtained. The ionic nature of the reductant ink makes it clog-free and stable for continuous and large-area printing. The method shows self-limited reduction feature, which enables electrical conductivity of graphene patterns to be tuned within 5 orders of magnitude, reaching as high as 8,000 S.m-1. Furthermore, this method can be extended to produce noble metal/graphene composite patterns. The devices, including transistors, biosensors, and surface- enhanced Raman scattering substrates, demonstrate excellent functionalities. This work provides a new strategy to prepare large-area graphene-based devices that is low-cost and highly efficient, promising to advance research on graphene- based flexible electronics. 展开更多
关键词 GRAPHENE graphene oxide direct writing inkier printing REDUCTION
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