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Multifunctional Polymer Nanofibers: UV Emission, Optical Gain, Anisotropic Wetting, and High Hydrophobicity for Next Flexible Excitation Sources

Year: 2015

Journal: ACS APPLIED MATERIALS & INTERFACES, Vol. 7, p 21907-21912, 20170208

Authors: Morello, Giovanni; Manco, Rita; Moffa, Maria; Persano, Luana; Camposeo, Andrea; Pisignano, Dario

Organizations: CNR, Ist Nanosci, Euromediterranean Ctr Nanomat Modelling & Technol, I-73100 Lecce, Italy; Ist Italiano Tecnol, UNILE, Ctr Biomol Nanotechnol, I-73010 Arnesano, LE, Italy; Univ Salento, Dipartimento Matemat & Fis Ennio De Giorgi, I-73100 Lecce, Italy

The use of UV light sources is highly relevant in many fields of science, being directly related to all those detection and diagnosis procedures that are based on fluorescence spectroscopy. Depending on the specific application, UV light-emitting materials are desired to feature a number of opto-mechanical properties, including brightness, optical gain for being used in laser devices, flexibility to conform with different lab-on-chip architectures, and tailorable wettability to control and minimize their interaction with ambient humidity and fluids. In this work, we introduce multifunctional, UV-emitting electrospun fibers with both optical gain and greatly enhanced anisotropic hydrophobicity compared to films. Fibers are described by the onset of a composite wetting state, and their arrangement in uniaidal arrays further favors liquid directional control. The low gain threshold, optical losses, plastic nature, flexibility, and stability of these UV-emitting fibers make them interesting for building light-emitting devices and microlasers. Furthermore, the anisotropic hydrophobicity found is strongly synergic with optical properties, reducing interfacial interactions with liquids and enabling smart functional surfaces for droplet microfluidic and wearable applications.