Surface-Initiated ARGET ATRP of Antifouling Zwitterionic Brushes Using Versatile and Uniform Initiator Film

In this study, we developed a uniform initiator layer that can be formed on various surfaces, and formed site-selectively, for the subsequent antifouling polymer brush formation. Initially, metal–organic films composed of tannic acid (TA) and FeIII ions (TA-FeIII) were formed on various surfaces, fo...

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Veröffentlicht in:Langmuir 2019-10, Vol.35 (41), p.13268-13274
Hauptverfasser: Jeong, Wonwoo, Kang, Hyeongeun, Kim, Eunseok, Jeong, Jaehoon, Hong, Daewha
Format: Artikel
Sprache:eng
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Zusammenfassung:In this study, we developed a uniform initiator layer that can be formed on various surfaces, and formed site-selectively, for the subsequent antifouling polymer brush formation. Initially, metal–organic films composed of tannic acid (TA) and FeIII ions (TA-FeIII) were formed on various surfaces, followed by functionalization with an aryl azide-based initiator (ABI) under photoreaction. In particular, combination with a photolithographic technique enabled the presentation of initiators only on the intended region within a single-surface platform. A resultant initiator film (TF-ABI) was formed under mild reaction conditions and meets the uniformity and transparency requirements concurrently. Subsequently, we showed that TF-ABI can be further utilized to form a polymer brush by proceeding with surface-initiated polymerization using a zwitterionic monomer, namely, sulfobetaine acrylamide (SBAA). Instead of applying a classical, yet air-sensitive atom transfer radical polymerization (ATRP) technique, we utilized an activator regenerated by electron transfer (ARGET) ATRP under air conditions without a cumbersome deoxygenation step. Overall, our initiator layer allowed the antifouling poly­(SBAA) brush to be used on various surfaces, and enabled their pattern generation.
ISSN:0743-7463
1520-5827
DOI:10.1021/acs.langmuir.9b02219