Printing colour at the optical diffraction limit
Top Cited Papers
- 12 August 2012
- journal article
- Published by Springer Nature in Nature Nanotechnology
- Vol. 7 (9), 557-561
- https://doi.org/10.1038/nnano.2012.128
Abstract
The highest possible resolution for printed colour images is determined by the diffraction limit of visible light. To achieve this limit, individual colour elements (or pixels) with a pitch of 250 nm are required, translating into printed images at a resolution of ∼100,000 dots per inch (d.p.i.). However, methods for dispensing multiple colourants or fabricating structural colour through plasmonic structures have insufficient resolution and limited scalability. Here, we present a non-colourant method that achieves bright-field colour prints with resolutions up to the optical diffraction limit. Colour information is encoded in the dimensional parameters of metal nanostructures, so that tuning their plasmon resonance determines the colours of the individual pixels. Our colour-mapping strategy produces images with both sharp colour changes and fine tonal variations, is amenable to large-volume colour printing via nanoimprint lithography, and could be useful in making microimages for security, steganography, nanoscale optical filters and high-density spectrally encoded optical data storage.Keywords
This publication has 32 references indexed in Scilit:
- Structural Colors: From Plasmonic to Carbon NanostructuresSmall, 2011
- Gapless spin liquid of an organic triangular compound evidenced by thermodynamic measurementsNature Communications, 2011
- Plasmonic Nanopillar Arrays for Large-Area, High-Enhancement Surface-Enhanced Raman Scattering SensorsACS Nano, 2011
- 3D Bulk Ordering in Macroscopic Solid Opaline Films by Edge‐Induced Rotational ShearingAdvanced Materials, 2011
- Efficient disc on pillar substrates for surface enhanced Raman spectroscopyChemical Communications, 2011
- Plasmonic nanoresonators for high-resolution colour filtering and spectral imagingNature Communications, 2010
- Mimicking Domino‐Like Photonic Nanostructures on Butterfly WingsSmall, 2009
- Polymer Pen LithographyScience, 2008
- High‐Speed Roll‐to‐Roll Nanoimprint Lithography on Flexible Plastic SubstratesAdvanced Materials, 2008
- Calculated Absorption and Scattering Properties of Gold Nanoparticles of Different Size, Shape, and Composition: Applications in Biological Imaging and BiomedicineThe Journal of Physical Chemistry B, 2006