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NTIS 바로가기ACS nano, v.14 no.12, 2020년, pp.17254 - 17261
Jeon, Jisoo (Department of Polymer Science and Engineering , Inha University , Incheon 22212 , Republic of Korea) , Tan, Alvin T. L. (Department of Mechanical Engineering and Laboratory for Manufacturing and Productivity , Massachusetts Institute of Technology , Cambridge , Massachusetts 02139 , United States) , Lee, Jaeyong (Department of Chemical Engineering , Pohang University of Science and Technology , Pohang , Kyungbuk 37673 , Republic of Korea) , Park, Jeong Eun (Department of Polymer Science and Engineering , Inha University , Incheon 22212 , Republic of Korea) , Won, Sukyoung (Department of Polymer Science and Engineering , Inha University , Incheon 22212 , Republic of Korea) , Kim, Sanha (Department of Mechanical Engineering and Laboratory for Manufacturing and Productivity , Massachusetts Institute of Technology , Cambridge , Massachusetts 02139 , United States United States) , Bedewy, Mostafa , Go, Jamison , Kim, Jin Kon , Hart, A. John , Wie, Jeong Jae
Evaporative self-assembly of semiconducting polymers is a low-cost route to fabricating micrometer and nanoscale features for use in organic and flexible electronic devices. However, in most cases, rate is limited by the kinetics of solvent evaporation, and it is challenging to achieve uniformity ov...
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