Wafer-Scale Patterning of Reduced Graphene Oxide Electrodes by Transfer-and-Reverse Stamping for High Performance OFETs

  • Lee, Joong Suk; 
  • Kim, Nam Hee; 
  • Kang, Moon Sung; 
  • Yu, Hojeong; 
  • Lee, Dong Ryoul; 
  • ... Chang, Suk Tai; 
  • 외 2명
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초록

A wafer-scale patterning method for solution-processed graphene electrodes, named the transfer-and-reverse stamping method, is universally applicable for fabricating source/drain electrodes of n- and p-type organic field-effect transistors with excellent performance. The patterning method begins with transferring a highly uniform reduced graphene oxide thin film, which is pre-prepared on a glass substrate, onto hydrophobic silanized (rigid/flexible) substrates. Patterns of the as-prepared reduced graphene oxide films are then formed by modulating the surface energy of the films and selectively delaminating the films using an oxygen-plasma-treated elastomeric stamp with patterns. Reduced graphene oxide patterns with various sizes and shapes can be readily formed onto an entire wafer. Also, they can serve as the source/drain electrodes for benchmark n- and p-type organic field-effect transistors with enhanced performance, compared to those using conventional metal electrodes. These results demonstrate the general utility of this technique. Furthermore, this simple, inexpensive, and scalable electrode-patterning-technique leads to assembling organic complementary circuits onto a flexible substrate successfully.

키워드

reduced graphene oxide; micropatterning; thin films; source-drain electrodes; flexible inverters; FIELD-EFFECT TRANSISTORS; THIN-FILM TRANSISTORS; ORGANIC SEMICONDUCTORS; AQUEOUS DISPERSIONS; EFFECT MOBILITY; GRAPHITE OXIDE; TRANSPARENT; FABRICATION; DIELECTRICS; TRANSPORT
제목
Wafer-Scale Patterning of Reduced Graphene Oxide Electrodes by Transfer-and-Reverse Stamping for High Performance OFETs
저자
Lee, Joong Suk; Kim, Nam Hee; Kang, Moon Sung; Yu, Hojeong; Lee, Dong Ryoul; Oh, Joon Hak; Chang, Suk Tai; Cho, Jeong Ho
DOI
10.1002/smll.201300538
발행일
2013-08
유형
Article
저널명
Small
권
9
호
16
페이지
2817 ~ 2825