Nano Letters · 2017 · 56 citations · 45 references
Refractory plasmonics deals with metallic nanostructures that can withstand high temperatures and intense laser pulses. The common belief was that refractory materials such as TiN are necessary for this purpose. Here we show that refractory plasmonics is possible without refractory materials. We demonstrate that gold nanostructures which are overcoated with 4 and 40 nm Al<sub>2</sub>O<sub>3</sub> (alumina) by an atomic layer deposition process or by thick IC1-200 resist can withstand temperatures of over 800 °C at ambient atmospheric conditions. Furthermore, the alumina-coated structures can withstand intense laser radiation of over 10 GW/cm<sup>2</sup> at ambient conditions without damage. Thus, it is possible to combine the excellent linear and nonlinear plasmonic properties of gold with material properties that were believed to be only possible with the lossier and less nonlinear refractory materials.
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Kylie Catchpole, Albert Polman · Optics Express · 2008 · 1.5K citations · Full text
Titanium nitride as a plasmonic material for visible and near-infrared wavelengths
Gururaj V. Naik, Jeremy L. Schroeder, Xingjie Ni et al. · Optical Materials Express · 2012 · 654 citations · Full text