Paper Abstract and Keywords |
Presentation |
2013-04-19 09:25
Fine patterning method for silver nanoparticle electrodes by using hydrophobic resist Ryo Sugano, Yasunori Takeda, Yu Kobayashi, Kenjiro Fukuda, Daisuke Kumaki, Shizuo Tokito (Yamagata Univ.) ED2013-10 Link to ES Tech. Rep. Archives: ED2013-10 |
Abstract |
(in Japanese) |
(See Japanese page) |
(in English) |
Recently, from the point of view of energy-saving and low cost, fabrication method for electronic devices by using solution process is attracting much attention. We reported the simple pattering method using printable electrode such as silver nanoparticles ink, which was patterned by the difference of hydrophilic and hydrophobic properties of the surface . In this method, since oxygen plasma was employed for pattering process for the hydrophilic and hydrophobic surface, about 50 µm channel length could be obtained. In this study, to obtain shorter channel length (less than 10 μm), we have developed new fine pattering method for silver nanoparticle ink using hydrophobic photoresist, which have high water contact angle of more than 90. The photoresist layer can be patterned precisely by using ultraviolet (UV) curing through photo masks. After pattering the hydrophobic photoresist using photolithography, silver nanoparticle ink was spin-coated on the patterned substrate. Silver nanoparticle ink was spontaneously patterned along the hydrophilic pattern. As a result, very short channel electrode (less than 10 µm) was successfully achieved by simple spin-coating process. By applying this method to the organic thin-film transistors, we obtained mobility of 0.03 cm^2/Vs and on/off ratio of 10^6. |
Keyword |
(in Japanese) |
(See Japanese page) |
(in English) |
Organic Thin-film Transistor / Silver nanoparticle / Solution process / Hydrophilic and hydrophobic pattering / / / / |
Reference Info. |
IEICE Tech. Rep., vol. 113, no. 9, ED2013-10, pp. 37-40, April 2013. |
Paper # |
ED2013-10 |
Date of Issue |
2013-04-11 (ED) |
ISSN |
Print edition: ISSN 0913-5685 Online edition: ISSN 2432-6380 |
Copyright and reproduction |
All rights are reserved and no part of this publication may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopy, recording, or any information storage and retrieval system, without permission in writing from the publisher. Notwithstanding, instructors are permitted to photocopy isolated articles for noncommercial classroom use without fee. (License No.: 10GA0019/12GB0052/13GB0056/17GB0034/18GB0034) |
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ED2013-10 Link to ES Tech. Rep. Archives: ED2013-10 |
Conference Information |
Committee |
ED |
Conference Date |
2013-04-18 - 2013-04-19 |
Place (in Japanese) |
(See Japanese page) |
Place (in English) |
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Topics (in Japanese) |
(See Japanese page) |
Topics (in English) |
Organic Devices, Oxide Devices, and others |
Paper Information |
Registration To |
ED |
Conference Code |
2013-04-ED |
Language |
Japanese |
Title (in Japanese) |
(See Japanese page) |
Sub Title (in Japanese) |
(See Japanese page) |
Title (in English) |
Fine patterning method for silver nanoparticle electrodes by using hydrophobic resist |
Sub Title (in English) |
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Keyword(1) |
Organic Thin-film Transistor |
Keyword(2) |
Silver nanoparticle |
Keyword(3) |
Solution process |
Keyword(4) |
Hydrophilic and hydrophobic pattering |
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1st Author's Name |
Ryo Sugano |
1st Author's Affiliation |
Yamagata University (Yamagata Univ.) |
2nd Author's Name |
Yasunori Takeda |
2nd Author's Affiliation |
Yamagata University (Yamagata Univ.) |
3rd Author's Name |
Yu Kobayashi |
3rd Author's Affiliation |
Yamagata University (Yamagata Univ.) |
4th Author's Name |
Kenjiro Fukuda |
4th Author's Affiliation |
Yamagata University (Yamagata Univ.) |
5th Author's Name |
Daisuke Kumaki |
5th Author's Affiliation |
Yamagata University (Yamagata Univ.) |
6th Author's Name |
Shizuo Tokito |
6th Author's Affiliation |
Yamagata University (Yamagata Univ.) |
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Speaker |
Author-1 |
Date Time |
2013-04-19 09:25:00 |
Presentation Time |
25 minutes |
Registration for |
ED |
Paper # |
ED2013-10 |
Volume (vol) |
vol.113 |
Number (no) |
no.9 |
Page |
pp.37-40 |
#Pages |
4 |
Date of Issue |
2013-04-11 (ED) |
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