L-4: Late-New Paper: Active-Matrix Operation of Electrophoretic Devices with Inkjet-Printed Polymer Thin Film Transistors

Active‐matrix operation of an electrophoretic device has been achieved with all‐polymer thin film transistors (TFTs). The source/drain, gate electrodes and gate lines of the TFTs were fabricated by inkjet printing with a conductive polymer, polyethylenedioxythiophene (PEDOT). Electrophoretic materia...

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Veröffentlicht in:SID International Symposium Digest of technical papers 2002-05, Vol.33 (1), p.1017-1019
Hauptverfasser: Kawase, Takeo, Newsome, Christopher, Inoue, Satoshi, Saeki, Takayuki, Kawai, Hideyuki, Kanbe, Sadao, Shimoda, Tatsuya, Sirringhaus, Henning, Mackenzie, Devin, Burns, Seamus, Friend, Richard
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container_end_page 1019
container_issue 1
container_start_page 1017
container_title SID International Symposium Digest of technical papers
container_volume 33
creator Kawase, Takeo
Newsome, Christopher
Inoue, Satoshi
Saeki, Takayuki
Kawai, Hideyuki
Kanbe, Sadao
Shimoda, Tatsuya
Sirringhaus, Henning
Mackenzie, Devin
Burns, Seamus
Friend, Richard
description Active‐matrix operation of an electrophoretic device has been achieved with all‐polymer thin film transistors (TFTs). The source/drain, gate electrodes and gate lines of the TFTs were fabricated by inkjet printing with a conductive polymer, polyethylenedioxythiophene (PEDOT). Electrophoretic material was prepared from TiO2 particles suspended in dyed solution, and was microencapsulated in polymer membrane spheres. The microcapsules were sandwiched between the polymer active‐matrix array and a counter electrode. The voltage of each pixel was independently changed by switching the printed polymer TFT, and contrast in the electrophoretic material was successfully obtained.
doi_str_mv 10.1889/1.1830115
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title L-4: Late-New Paper: Active-Matrix Operation of Electrophoretic Devices with Inkjet-Printed Polymer Thin Film Transistors
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