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Water-Templated Growth of Interfacial Superglue Polymers for Tunable Thin Films and In Situ Fluid Encapsulation.

作者信息

Jampani Venkata S R, Škarabot Miha, Mur Urban, Baigl Damien, Jonas Ulrich, Lagerwall Jan P F, Ravnik Miha, Anyfantakis Manos

机构信息

Department of Physics and Materials Science, University of Luxembourg, Luxembourg, L-1511, Luxembourg.

Condensed Matter Physics Department, Jožef Stefan Institute, Ljubljana, 1000, Slovenia.

出版信息

Adv Mater. 2024 Oct;36(40):e2408243. doi: 10.1002/adma.202408243. Epub 2024 Aug 27.

Abstract

Thin polymer films (TPFs) are indispensable elements in numerous technologies ranging from liquid encapsulation to biotechnology to electronics. However, their production typically relies on wet chemistry involving organic solvents or chemical vapor deposition, necessitating elaborate equipment and often harsh conditions. Here, an eco-friendly, fast, and facile synthesis of water-templated interfacial polymers based on cyanoacrylates (superglues, CAs) that yield thin films with tailored properties is demonstrated. Specifically, by exposing a cationic surfactant-laden water surface to cyanoacrylate vapors, surfactant-modulated anionic polymerization produces a manipulable thin polymer film with a thickness growth rate of 8 nm min. Furthermore, the shape and color of the film are precisely controlled by the polymerization kinetics, wetting conditions, and/or exposure to patterned light. Using various interfaces as templates for film growth, including the free surface of drops and soap bubbles, the developed method advantageously enables in situ packaging of chemical and biological cargos in liquid phase as well as the encapsulation of gases within solidified bubbles. Simple, versatile, and biocompatible, this technology constitutes a potent platform for programmable coating and soft/smart encapsulation of fluids.

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