Mild and Selective C-H Activation of COC Microfluidic Channels Allowing Covalent Multifunctional Coatings

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Abstract

Plastics, such as cyclic olefin copolymer (COC), are becoming an increasingly popular material for microfluidics. COC is used, in part, because of its (bio)-chemical resistance. However, its inertness and hydrophobicity can be a major downside for many bioapplications. In this paper, we show the first example of a surface-bound selective C-H activation of COC into alcohol C-OH moieties under mild aqueous conditions at room temperature. The nucleophilic COC-OH surface allows for subsequent covalent attachments, such as of a H-terminated silane. The resulting hybrid material (COC-Si-H) was then modified via a photolithographic hydrosilylation in the presence of ω-functionalized 1-alkenes to form a new highly stable, solvent-resistant hybrid surface.

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Carvalho, R. R., Pujari, S. P., Vrouwe, E. X., & Zuilhof, H. (2017). Mild and Selective C-H Activation of COC Microfluidic Channels Allowing Covalent Multifunctional Coatings. ACS Applied Materials and Interfaces, 9(19), 16644–16650. https://doi.org/10.1021/acsami.7b02022

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