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Article Dans Une Revue Angewandte Chemie International Edition Année : 2017

Imprinted Photonic Hydrogels for the Size- and Shell-Selective Recognition of Nanoparticles

Résumé

Sensors based on responsive photonic hydrogels have recently attracted considerable attention for visual medical diagnostics, pharmaceutical bioassays, and environmental monitoring. However, the use of these promising materials for the detection of nanoparticles (NPs) has never been explored so far, although the sensing of nanoobjects is a rapidly evolving area of research. To address this issue, we have combined the concepts of inverse-opal hydrogels and nanoparticle-imprinted polymers. In this way, we could obtain a NP-imprinted photonic hydrogel consisting of a three-dimensional, highly ordered poly(methacrylic acid) macroporous array, in which nanocavities complementary to the target NPs, in this case colloidal quantum dots, are distributed. This novel type of NP-imprinted photonic hydrogel sensor was shown to display high sensitivity and selectivity, thus opening new prospects for the development of equipment-free and cost-efficient sensing devices for NPs.

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Chimie
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Dates et versions

hal-01630911 , version 1 (08-11-2017)

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Citer

Sarra Gam-Derouich, Céline M Bourdillon, Soraya Lakhdar chaouche, Laurent Coolen, Agnès Maître, et al.. Imprinted Photonic Hydrogels for the Size- and Shell-Selective Recognition of Nanoparticles. Angewandte Chemie International Edition, 2017, 56 (33), pp.9710 - 9714. ⟨10.1002/anie.201702540⟩. ⟨hal-01630911⟩
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