We demonstrate a novel colloidal self-assembly approach toward obtaining mechanically tunable, cost-efficient, and low-loss plasmonic nanostructures that show pronounced optical anisotropy upon mechanical deformation. Soft lithography and template-assisted colloidal self-assembly are used to fabricate a stretchable periodic square lattice of gold nanoparticles on macroscopic areas. We stress the impact of particle size distribution on the resulting optical properties. To this end, lattices of narrowly distributed particles (∼2% standard deviation in diameter) are compared with those composed of polydisperse ones (∼14% standard deviation). The enhanced particle quality sharpens the collective surface lattice resonances by 40% to achieve a fu...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Precise arrangements of plasmonic nanoparticles on substrates are important for designing optoelectr...
Coherent oscillations of free electrons in a metal, localized in a small volume or at an interface b...
Noble metal nanoparticles can absorb incident light very efficiently due to their ability to support...
Over the past 30 years, the engineering of plasmonic resonances at the nanoscale has progressed dram...
Lattice plasmons, i.e., diffractively coupled localized surface plasmon resonances, occur in long-ra...
Ordered arrays of metal nanoparticles offer new opportunities to engineer light–matter interactions ...
Plasmonic nanoparticles feature remarkable optical and electronic properties in consequence ...
Plasmonic metasurfaces based on quasi-one-dimensional (1D) nanostripe arrays are homogeneously prepa...
Well-defined ordered arrays of plasmonic nanostructures were fabricated on stretchable substrates an...
Plasmonic metasurfaces based on quasi-one-dimensional (1D) nanostripe arrays are homogeneously prepa...
Precise arrangements of plasmonic nanoparticles on substrates are important for designing optoelectr...
We present ensembles of surface-ordered nanoparticle arrangements, which are formed by template-assi...
The extraordinary properties of reconfigurable soft materials are used to drive the resonance proper...
We report the fabrication and characterization of stretchable nanocomposite films with mechanically ...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Precise arrangements of plasmonic nanoparticles on substrates are important for designing optoelectr...
Coherent oscillations of free electrons in a metal, localized in a small volume or at an interface b...
Noble metal nanoparticles can absorb incident light very efficiently due to their ability to support...
Over the past 30 years, the engineering of plasmonic resonances at the nanoscale has progressed dram...
Lattice plasmons, i.e., diffractively coupled localized surface plasmon resonances, occur in long-ra...
Ordered arrays of metal nanoparticles offer new opportunities to engineer light–matter interactions ...
Plasmonic nanoparticles feature remarkable optical and electronic properties in consequence ...
Plasmonic metasurfaces based on quasi-one-dimensional (1D) nanostripe arrays are homogeneously prepa...
Well-defined ordered arrays of plasmonic nanostructures were fabricated on stretchable substrates an...
Plasmonic metasurfaces based on quasi-one-dimensional (1D) nanostripe arrays are homogeneously prepa...
Precise arrangements of plasmonic nanoparticles on substrates are important for designing optoelectr...
We present ensembles of surface-ordered nanoparticle arrangements, which are formed by template-assi...
The extraordinary properties of reconfigurable soft materials are used to drive the resonance proper...
We report the fabrication and characterization of stretchable nanocomposite films with mechanically ...
Key in the application of plasmonics is the realization of low loss or high quality (Q) factor reson...
Precise arrangements of plasmonic nanoparticles on substrates are important for designing optoelectr...
Coherent oscillations of free electrons in a metal, localized in a small volume or at an interface b...