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Featured researches published by C. Nico.


Journal of Applied Physics | 2016

Structural, optical, and electrical properties of SmNbO4

C. Nico; M.R.N. Soares; F.M. Costa; M.P.F. Graça

Rare-earth orthoniobates constitute a class of materials that has been exploited due to their interesting physical properties depending on the lanthanide element. Besides paramagnetism, ferroelasticity, and negative compressibility, these materials are known by their interesting optical properties and mixed types of conduction processes (protonic, ionic, and electronic). In this work, two types of SmNbO4 samples were studied: polycrystalline samples, prepared by a sol-gel route using the Pechini method, and single crystalline fibres grown by the Laser Floating Zone technique. These samples were structurally characterized based on powder and single-crystal X-ray diffraction studies. A metastable tetragonal phase, stabilized by grain size, was identified in the synthesized powders. After a sintering process of such powders, a single monoclinic phase was obtained. Complementarily, scanning electron microscopy and Raman spectroscopy analyses were performed to these samples. Photoluminescence and photoluminesc...


SPIE Microtechnologies | 2015

Defect luminescence in oxides nanocrystals grown by laser assisted techniques

J. Rodrigues; M.R.N. Soares; N. F. Santos; T. Holz; N. Ben Sedrine; C. Nico; A.J.S. Fernandes; A.J. Neves; F.M. Costa

Wide band gap oxides, such as ZnO, SnO2 and ZrO2, are functional materials with a wide range of applications in several important technological areas such as those including lighting, transparent electronics, sensors, catalysis and biolabeling. Recently, doping and co-doping of oxides with lanthanides have attracted a strong interest for lighting purposes, especially among them nanophosphors for bioassays. Tailoring the crystalline materials physical properties for such applications often requires a well-controlled incorporation of dopants in the material lattice and a comprehensive understanding of their role in the oxides matrices. These undoped or intentionally doped oxides have band gap energies exceeding 3.3 eV at room temperature and are known to exhibit optically active centers that span from the ultraviolet to the near infrared region. Typically, by using photon energy excitation above the materials band gap, high quality undoped materials display narrow emission lines near the band edge due to free and bound-exciton recombination, as well as shallow donor-acceptor recombination pairs. Additionally, broad emission bands are often observed in these wide band gap hosts, hampering some of the desired physical properties for further applications. Recognizing and understanding the role of the dopant-related defects when deliberately introduced in the oxide hosts, as well as their influence on the samples luminescence properties, constitutes a matter of exploitation by the scientific community worldwide. In this work, we investigate the luminescence properties of undoped and lanthanide doped oxide materials grown by laser assisted techniques. Laser assisted flow deposition (LAFD) and pulse laser ablation in liquids (PLAL) were used for the growth of ZnO, SnO2 and yttria stabilized ZrO2 (YSZ) micro and nanocrystals with different morphologies, respectively. Regarding the YSZ host, trivalent lanthanide ions were optically activated by in-situ doping and co-doping. The influence of the defect energy states on the optical properties of the different undoped and doped metal oxide hosts is investigated under ultraviolet and infrared excitation by means of photoluminescence and photoluminescence excitation.


Progress in Materials Science | 2016

Niobium oxides and niobates physical properties: Review and prospects

C. Nico; M.P.F. Graça


Materials Science and Engineering B-advanced Functional Solid-state Materials | 2012

Red light from ZrO2:Eu3+ nanostructures

M.R.N. Soares; C. Nico; D. Oliveira; M. Peres; L. Rino; A.J.S. Fernandes; F.M. Costa


Journal of The European Ceramic Society | 2011

Effect of processing method on physical properties of Nb2O5

M.R.N. Soares; S. Leite; C. Nico; M. Peres; A.J.S. Fernandes; M.P.F. Graça; M. Matos; R.C.C. Monteiro; F.M. Costa


Journal of Luminescence | 2014

Eu3+ luminescence in aluminophosphate glasses

C. Nico; R. Fernandes; M.P.F. Graça; M. Elisa; B.A. Sava; R.C.C. Monteiro; L. Rino


Optical Materials | 2011

Morphological, structural, optical and dielectric properties of 91SiO2:4Li2O:4Nb2O5:1Dy2O3 (% mole) glass prepared by sol–gel

M.A. Valente; M. Peres; C. Nico; M.P.F. Graça; A. S. B. Sombra; C.C. Silva


Optical Materials | 2013

Effects of ultraviolet excitation on the spectroscopic properties of Sm3+ and Tb3+ doped aluminophosphate glasses

C. Nico; M.P.F. Graça; M. Elisa; B.A. Sava; R.C.C. Monteiro; L. Rino


Journal of The European Ceramic Society | 2013

NbO/Nb2O5 core–shells by thermal oxidation

C. Nico; L. Rino; Mariana Matos; Rui Monteiro; F.M. Costa; M.P.F. Graça


Ceramics International | 2016

Effects of Zr and Ga doping on the stoichiometry and properties of niobium oxides

C. Nico; M.R.N. Soares; L.C. Costa; M.P.F. Graça

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L. Rino

University of Aveiro

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R.C.C. Monteiro

Universidade Nova de Lisboa

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M. Peres

University of Aveiro

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