Perfluoroalkylated alternating copolymer possessing solubility in fluorous liquids and imaging capabilities under high energy radiation

全氟烷基化交替共聚物具有在氟液体中的溶解性和在高能辐射下成像的能力

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作者:Hyun-Taek Oh, Seok-Heon Jung, Kang-Hyun Kim, Yina Moon, Do Hyeon Jeong, Yejin Ku, Sangsul Lee, Byeong-Gyu Park, Jiyoul Lee, Chawon Koh, Tsunehiro Nishi, Hyun-Woo Kim, Jin-Kyun Lee

Abstract

A highly fluorinated alternating polymer, P(RFMi-St), possessing improved thermal properties and patterning capabilities over perfluoroalkyl polymethacrylates under high energy radiation was achieved with semi-perfluorododecyl maleimide (RFMi) and styrene (St). RFMi could be synthesised efficiently via a Mitsunobu reaction condition and copolymerised with St by free radical and reversible-deactivation radical polymerisation protocols. P(RFMi-St) showed a satisfactory glass-transition temperature (108 °C) and intermolecular cross-linking behaviour under electron-beam and commercially more important extreme UV (λ = 13.5 nm) irradiation. The exposed regions lost their solubility, resulting in the successful formation of mechanically non-deteriorated negative-tone images down to 50 nm. In addition, P(RFMi-St) could be solution-processed with chemically non-damaging fluorous liquids, which enabled the polymer to be applied effectively on top of an organic semiconductor layer as a dielectric material (dielectric constant 2.7) for the organic field-effect transistor fabrication.

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