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- W2016055904 abstract "To compare an electrical and optical characteristics of indium tin oxide (ITO) and carbon nanotube (CNT) electrode on flexible and reflective display, we fabricate two charged particle-type display panels under the same panel condition of which the width of ribs is 10 <TEX>${mu}m$</TEX>, the cell size is <TEX>$300{mu}m{times}300{mu}m$</TEX>, the q/m value of the white particles is -4.3 <TEX>${mu}C/g$</TEX> and that for the black is +1.3 <TEX>${mu}C/g$</TEX>, and the cell gap is 75 <TEX>${mu}m$</TEX>, 125 <TEX>${mu}m$</TEX>, and 175 <TEX>${mu}m$</TEX>. We use plastic substrates coated with ITO and CNT electrode. To evaluate optical property, we measure a response time of particles using a laser and a photodiode. Threshold and driving voltages of CNT electrode according to the sheet resistance of 300, 600, 1,000 (ohm/sq) are compared with ITO electrode of 10 (ohm/sq). A response time of the CNT panel is similar to that of ITO panel, but the threshold and driving voltages of CNT panel are higher than that of ITO panel, inducing a large bombardment of the particles and shortening the lifetime of the panel. High difference of a threshold and a driving voltage of CNT panel will induce an particle clumping, resulting degradation of the panel. A bending radius of the fabricated CNT panel is 18 <TEX>${mu}m$</TEX>." @default.
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- W2016055904 date "2012-06-01" @default.
- W2016055904 modified "2023-09-29" @default.
- W2016055904 title "Driving Characteristics of Flexible Reflective Display Using Carbon Nanotube Electrode" @default.
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- W2016055904 doi "https://doi.org/10.4313/jkem.2012.25.6.451" @default.
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