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介电材料在介电润湿器件中的应用进展 被引量:3

Application Advance of Dielectric Materials in Electrowetting-on-dielectric Devices
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摘要 介电材料的选择以及介电层的制备是介电润湿器件制作工艺中最关键的部分,在介电润湿器件中,介电层不仅是其重要组成部分,也是影响器件实用性能和具体应用领域的关键。首先简述了介电润湿驱动的原理以及介电材料的选取原则,然后在结合国内外该领域研究现状的基础上对已报道的介电材料在各类介电润湿器件中的应用实例进行了归纳,最后对目前介电材料在应用中出现的问题以及解决方法进行了讨论。 Dielectric material selection and preparation of dielectric layer are the critical steps in the fabrication process of electrowetting-on-dielectric (EWOD) devices. The dielectric layer is not only an important part of the EWOD device, but also the key influence factor for the performance and application of the device. In this paper, the EWOD actuating theory and selection principle of dielectric material are introduced briefly, and then the applications of dielectric materials in various EWOD devices are summarized based on the present studies at home and abroad. Final- ly, problems and solutions in the application of dielectric materials in EWOD devices are discussed.
作者 王亮 段俊萍 王万军 张斌珍 WANG Liang DUAN Junping WANG Wanjun ZHANG Binzhen(Science and Technology on Electronic Test & Measurement Laboratory,North University of China,Taiyuan 030051 Key Laboratory of Instrumentation Science & Dynamic Measurement, Ministry of Education, North University of China, Taiyuan 030051 Department of Engineering,Louisiana State University,Baton Rouge 70803)
出处 《材料导报》 EI CAS CSCD 北大核心 2016年第19期70-76,88,共8页 Materials Reports
基金 国家自然科学基金(51475438 61401405) 山西省留学基金(2014-060)
关键词 介电材料 介质上电润湿 微流控 液体透镜 dielectric material, electrowetting-on-dielectric, microfluidic, liquid lens
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  • 1Shen H H, Fan S K, Kim C J, et al. EWOD microfluidic systems for biomedical applications[J]. Microfluidics Nanofluidics, 2014, 16 (5):965.
  • 2Suzuki K, Homma H, Murayama T, et al. Electrowetting based ac- tuation of liquid droplets for micro transprotetion systemsj]]. J Adv Meehan Design, Systems, Manuf,2010,4(1):365.
  • 3赵瑞,华晓刚,田志强,刘启超,王评,梁忠诚.电润湿双液体变焦透镜[J].光学精密工程,2014,22(10):2592-2597. 被引量:15
  • 4Liberale F, Bernasconi R, Magagnin L. Fundamentals and application of electrowetting on dielectrics[J]. Current Nanosci , 2015, 11 (3):286.
  • 5吴建刚,岳瑞峰,曾雪锋,刘理天.基于介质上电润湿原理的微液滴驱动芯片[J].清华大学学报(自然科学版),2006,46(7):1341-1344. 被引量:8
  • 6Chen L Q, Bonaccurso E. Electrowetting-from statics to dynamics[J]. Adv Colloid Interface Sci,2014,210(8):2.
  • 7Lai Y T, Yang Y T, Lee C Y. An intelligent digital microfluidic processor for biomedical detection[J]. J Signal Processing Systems, 2015,78(1) : 85.
  • 8Schertzer M J, Mrad R B, Sullivan P E. Automated detection of particle concentration and chemical reactions in EWOD devices[J]. Sensors Actuators B: Chem,2012,164(1):1.
  • 9欧阳帆,吴建刚,孙凯歌,岳瑞峰,刘理天.基于介质上电润湿的透射式显示器件[J].纳米技术与精密工程,2008,6(1):34-37. 被引量:4
  • 10Lee J S, Kim Y K, Won Y H, et al. Novel concept electrowetting microlens array based on passive matrix[J]. IEEE Photonics Technol Lett,2016,28(2): 167.

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