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Fabrication of heterogeneous chemical patterns on stretchable hydrogels using single-photon lithography

Haeseong Im, Eunseok Heo, Dae‐Hyeon Song, Jeongwon Park, Hyeonbin Park, Kibum Kang, Jae‐Byum Chang

Year
2022
Citations
3

Abstract

confocal microscopy enables the patterning of fluorophores on hydrogels. By applying this technique to highly stretchable hydrogels, we demonstrate three applications: (1) improving pattern resolution by fabricating patterns on stretched hydrogels and then returning the hydrogels to their initial, unstretched length; (2) modifying the local stretchability of hydrogels at a microscale resolution; and (3) fabricating perfusable microchannels with chemical patterns by winding chemically patterned hydrogels around a template, embedding the hydrogels in a second hydrogel, and then removing the template. The patterning method demonstrated in this work may facilitate a better mimicking of the physicochemical properties of organs in tissue engineering and may be used to make hydrogel robots with specific chemical functionalities.

Keywords

Self-healing hydrogelsMicroscale chemistryNanotechnologyMaterials scienceFabricationLithographySoft lithographySoft roboticsOptoelectronicsComputer science

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