• Opto-Electronic Engineering
  • Vol. 36, Issue 4, 146 (2009)
LIANG Zhong-cheng*, LI Jing, XIN Heng-jie, YANG Peng, CHEN Tao, and ZHAO Rui
Author Affiliations
  • [in Chinese]
  • show less
    DOI: Cite this Article
    LIANG Zhong-cheng, LI Jing, XIN Heng-jie, YANG Peng, CHEN Tao, ZHAO Rui. Properties of Electrowetting-on-dielectric on the Conductive Silicone Rubber Electrode Substrate[J]. Opto-Electronic Engineering, 2009, 36(4): 146 Copy Citation Text show less
    References

    [1] DALY D. Microlens Arrays [M]. New York:CRC Press,2000.

    [2] ZHANG Yun-xi. The semiconductor manufacturing process micro-arrays and its application [J]. Global Electronics China,1998,10:64-65.

    [3] PSALTIS D,QUAKE S R,YANG Chang-huei. Developing optofluidic technology through the fusion of microfluidics and optics [J]. Nature(S0028-0836),2006,442(27):381-386.

    [4] MOENCH W,ZAPPE H. Fabrication and testing of micro-lens arrays by all-liquid techniques [J]. Journal of Optics A: Pure and Applied Optics(S1464-4258),2004,6:330-337.

    [5] CHRONIS N,LIU G L,JEONG K H,et al. Tunable liquid-filled microlens array integrated with microfluidic network [J]. Optics Express(S1094-4087),2003,11(19):2370-2378.

    [6] JEONG K H,LIU G L,CHRONIS N,LEE L P. Tunable microdoublet lens array [J]. Optics Express(S1094-4087),2004,12(11):2494-2500.

    [7] LIANG Zhong-cheng,CHEN Tao,XU Ning,et al. Optofluidic chip of electrical-tuning variable-focus microlens array: China, CN1975470 [P]. 2007.

    [8] LIANG Zhong-cheng,TU Xing-hua,XU Ning,et al.The production methods of optofluidic electrical-tuning variable-focus microlens array chip: China, CN1996056 [P]. 2007.

    [9] LIANG Zhong-cheng,XU Ning,TU Xing-hua,et al. Novel Integrated Device of Optofluidic Variable-focus Microlens Array [J]. Opto-Electronic Engineering,2008,35(9):32-35.

    [10] LIANG Zhong-cheng,ZHAO Rui. Optofluidics and Its Potential Applications [J]. Laser &Optoelectronics Progress,2008,45(6):16-23.

    [11] KUIPER S,HENDRIKS B H W. Variable-focus liquid lens for miniature cameras [J]. Appl. Phys. Lett(S0003-6951),2004,85:1128-1130.

    [12] QIN Lian-cheng. Experiment study of conductivity of conductive adhesive [J]. Optics and Precision Engineering,2005,13:114-119.

    [13] ZHANG Jie,FENG Sheng-yu. Progress in Theoretical Research on Conductive Silicone Rubber [J]. Journal of Functional Polymers,2002,15:87-90.

    [14] ZENG Xue-feng,DONG Liang,WU Jian-gang,et al. Study of the Electrowetting-on-dielectric(EWOD) [J]. Chinese Journal of Scientific Instrument,2004,25(s1):263-264.

    [15] KANG Ming,OUYANG Fan,WU Jian-gang,et al. Meniscus Pinned Variable-Focus Liquid Lens Based on Electrowetting-on-Dielectric [J]. Chinese Journal of Sensors and Actuators,2008,21(4):652-655.

    [16] Strassberger W,Winter H -J,QU Jian-xing. Silicone Rubber for Medium and High Voltage Application [J]. Silicone Material,2000,14(1):17-20

    CLP Journals

    [1] DU Rui, YUANWen, SANG Minghuang, DAI Hailang. Characteristic Analysis of the Symmetrical Metalcladding Waveguide Affected by Temperature[J]. Acta Photonica Sinica, 2014, 43(7): 723005

    [2] HUANG Hong, WU Xin-hong, LI Jian-wei. Enhanced Relation Discriminant Analysis and Its Application in Face Recognition[J]. Opto-Electronic Engineering, 2010, 37(1): 76

    [3] ZHANG Qian, XU Xian-feng, YUAN Hong-guang, LU Guang-can, JIAO Zhi-yong. Phase-shift Extraction and Wave Reconstruction in Four-step Phase-shifting Interferometry[J]. Opto-Electronic Engineering, 2011, 38(8): 139

    [4] Zhao Guilin, Zhu Qibing, Huang Min. Apple Mealiness Detection Using Supervised Isometric Feature Mapping and Support Vector Machine Based on Hyperspectral Scattering Image[J]. Laser & Optoelectronics Progress, 2011, 48(10): 101002

    LIANG Zhong-cheng, LI Jing, XIN Heng-jie, YANG Peng, CHEN Tao, ZHAO Rui. Properties of Electrowetting-on-dielectric on the Conductive Silicone Rubber Electrode Substrate[J]. Opto-Electronic Engineering, 2009, 36(4): 146
    Download Citation