Femtosecond-laser selective printing of graphene oxide and PPV on polymeric microstructures

Direct laser writing techniques are suitable for the high precision-patterning of 2D and 3D micro/nanostructures, featuring a variety of geometries and materials. Here, we demonstrated the use of laser-induced forward transfer with fs-pulses (fs-LIFT) to selectively transfer graphene oxide and poly(...

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Veröffentlicht in:Journal of materials science 2021-07, Vol.56 (19), p.11569-11577
Hauptverfasser: Paula, Kelly T., Tomazio, Nathália B., Salas, Oriana. I. A., Otuka, Adriano J. G., Almeida, Juliana M. P., Andrade, Marcelo B., Vieira, Nirton C. S., Balogh, Debora T., Mendonça, Cleber R.
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Sprache:eng
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Zusammenfassung:Direct laser writing techniques are suitable for the high precision-patterning of 2D and 3D micro/nanostructures, featuring a variety of geometries and materials. Here, we demonstrated the use of laser-induced forward transfer with fs-pulses (fs-LIFT) to selectively transfer graphene oxide and poly( p -phenylene vinylene) patterns onto polymeric microstructures, fabricated by two-photon polymerization. The influence of different fs-LIFT experimental parameters on the width and height of the printed patterns was investigated. Upon optimum fs-LIFT parameters, we achieved homogeneous printed areas of both materials onto specific regions of the microstructures. Raman spectroscopy confirmed that fs-LIFT does not change the donor material upon transfer. Overall, this work demonstrates a promising strategy with precise printing capabilities, thus opening new opportunities for the development of photonic and optoelectronic devices.
ISSN:0022-2461
1573-4803
DOI:10.1007/s10853-021-06045-3