Search Results - "Gajc, Marcin"
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Ultrafast photoluminescence and multiscale light amplification in nanoplasmonic cavity glass
Published in Nature communications (17-04-2024)“…Interactions between plasmons and exciton nanoemitters in plexcitonic systems lead to fast and intense luminescence, desirable in optoelectonic devices,…”
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When Eutectics Meet Plasmonics: Nanoplasmonic, Volumetric, Self‐Organized, Silver‐Based Eutectic
Published in Advanced optical materials (01-03-2015)“…Due to the development of novel manufacturing technologies and the increasing availability of nano‐/micromaterials, plasmonics has become an emerging field in…”
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Compendium of natural hyperbolic materials
Published in Optics express (05-10-2015)“…Artificially structured hyperbolic metamaterials (HMMs) - uniaxial materials with opposite signs of permittivity for ordinary and extraordinary waves - are one…”
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How Far Are We from Making Metamaterials by Self-Organization? The Microstructure of Highly Anisotropic Particles with an SRR-Like Geometry
Published in Advanced functional materials (09-04-2010)“…Metamaterials offer new unusual electromagnetic properties, which have already been demonstrated, and many postulated new functionalities are yet to be…”
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Optically-active metastable defects in volumetric nanoplasmonic composites
Published in Scientific reports (07-09-2018)“…Metastable defects in semiconductor materials have been well known for decades, but have only recently started to attract attention for their potential…”
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Nanoparticle Direct Doping: Novel Method for Manufacturing Three-Dimensional Bulk Plasmonic Nanocomposites
Published in Advanced functional materials (19-07-2013)“…Metallodielectric materials with plasmonic resonances at optical and infrared wavelengths are attracting increasing interest, due to their potential novel…”
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Synthesis and structural study of a self-organized MnTiO3–TiO2 eutectic
Published in Journal of alloys and compounds (25-02-2016)“…A microstructured manganese titanate – titanium dioxide, MnTiO3–TiO2, hybrid eutectic has been grown by the micro-pulling-down method from a TiO2 57 mol.% –…”
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New calcium‐free Na2O–Al2O3–P2O5 bioactive glasses with potential applications in bone tissue engineering
Published in Journal of the American Ceramic Society (01-02-2018)“…Sodium aluminophosphate glasses were evaluated for their bone repair ability. The glasses belonging to the system 45Na2O–xAl2O3‐(55‐x)P2O5, with x = (3, 5, 7,…”
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New calcium‐free Na 2 O–Al 2 O 3 –P 2 O 5 bioactive glasses with potential applications in bone tissue engineering
Published in Journal of the American Ceramic Society (01-02-2018)“…Sodium aluminophosphate glasses were evaluated for their bone repair ability. The glasses belonging to the system 45Na 2 O– x Al 2 O 3 ‐(55‐ x )P 2 O 5 , with…”
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Growth of a Plate-Shaped SrTiO3–TiO2 Eutectic
Published in Crystal growth & design (07-09-2011)“…Eutectic materials have potential as photoactive materials, due to their multiphase character (various available photoactive component phases and multiple band…”
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Manufacturing of Volumetric Glass–Based Composites with Single‐ and Double‐QD Doping
Published in Particle & particle systems characterization (01-01-2019)“…Quantum dot (QD)‐based light‐emitting materials are gaining increased attention because of their easily tunable optical properties desired for various…”
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Growth of a Plate-Shaped SrTiO 3 –TiO 2 Eutectic
Published in Crystal growth & design (07-09-2011)Get full text
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Eutectics: When Eutectics Meet Plasmonics: Nanoplasmonic, Volumetric, Self‐Organized, Silver‐Based Eutectic (Advanced Optical Materials 3/2015)
Published in Advanced optical materials (01-03-2015)“…Nanoplasmonic, volumetric, self‐organized, silver‐based eutectics exhibit localized surface plasmon resonances (LSPRs) at visible wavelengths after annealing…”
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Plasmonic materials and metamaterials by bottom-up approach: Manufacturing and properties
Published in 2013 15th International Conference on Transparent Optical Networks (ICTON) (01-06-2013)“…Two novel bottom-up manufacturing methods for manufacturing of plasmonic materials and metamaterials will be presented based on: (i) directional solidification…”
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