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SERS-Active Pattern in Silver-Ion-Exchanged Glass Drawn by Infrared Nanosecond Laser.

Nanomaterials (Basel, Switzerland) (2020-09-20)
Ekaterina Babich, Vladimir Kaasik, Alexey Redkov, Thomas Maurer, Andrey Lipovskii
RESUMEN

The irradiation of silver-to-sodium ion-exchanged glass with 1.06-μm nanosecond laser pulses of mJ-range energy results in the formation of silver nanoparticles under the glass surface. Following chemical removal of ~25-nm glass layer reveals a pattern of nanoparticles capable of surface enhancement of Raman scattering (SERS). The pattern formed when laser pulses are more than half-overlapped provides up to ~105 enhancement and uniform SERS signal distribution, while the decrease of the pulse overlap results in an order of magnitude higher but less uniform enhancement.

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1,2-Di(4-pyridyl)ethylene, 97%