tipo de financiamento |
Fundação para a Ciência e a Tecnologia |
acrónimo/
referência |
nanoHYperTHerm |
referência alternative |
PTDC/CTM-NAN/4647/2014 |
grupo(s) de investigação |
1 - nanomateriais inorgânicos funcionais e híbridos orgânico-inorgânico; |
departamento |
Physics (DF) |
período de execução |
2016-07-01 - 2019-06-30 (
36 Meses )
|
data de extensão projeto |
2019-12-31 (
6 Meses extra )
|
coordenador
/ip local |
Luís António Ferreira Martins Dias Carlos |
ciceco status |
Coordenador |
instituíção proponente |
Universidade de Aveiro (UA) |
instituições participante(s) |
ITQB
|
participação industrial |
Não |
parceiro(s) internacional |
Não |
orçamento total |
183.945€
|
orçamento ciceco |
168.825€
|
centro de custos |
3.89.224 |
|
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Y-2(Ge,Si)O-5:Pr phosphors: multimodal temperature and pressure sensors shaped by bandgap managementSojka, M; Runowski, M; Wozny, P; Carlos, LD; Zych, E; Lis, S 2021, JOURNAL OF MATERIALS CHEMISTRY C, 9, 39, 13818-13831.
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Exploiting bandgap engineering to finely control dual-mode Lu-2(Ge,Si)O-5:Pr(3+)luminescence thermometersSojka, M; Brites, CDS; Carlos, LD; Zych, E 2020, JOURNAL OF MATERIALS CHEMISTRY C, 8, 29, 10086-10097.
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La0.4Gd1.6Zr2O7:0.1%Pr transparent sintered ceramic - a wide-range luminescence thermometerTrojan-Piegza, J; Brites, CDS; Ramalho, JFCB; Wang, ZJ; Zhou, GH; Wang, SW; Carlos, LD; Zych, E 2020, JOURNAL OF MATERIALS CHEMISTRY C, 8, 21, 7005-7011.
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Decoding a Percolation Phase Transition of Water at similar to 330 K with a Nanoparticle RulerBrites, CDS; Zhuang, BL; Debasu, ML; Ding, D; Qin, X; Maturi, FE; Lim, WWY; Soh, D; Rocha, J; Yi, ZG; Liu, XG; Carlos, LD 2020, JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 11, 16, 6704-6711.
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Self-Calibrated Double Luminescent Thermometers Through Upconverting NanoparticlesBrites, CDS; Martinez, ED; Urbano, RR; Rettori, C; Carlos, LD 2019, FRONTIERS IN CHEMISTRY, 7,
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Lanthanide-Based Thermometers: At the Cutting-Edge of Luminescence ThermometryBrites, CDS; Balabhadra, S; Carlos, LD 2019, ADVANCED OPTICAL MATERIALS, 7, 5,
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Electrochromic Switch Devices Mixing Small- and Large-Sized Upconverting NanocrystalsMartinez, ED; Brites, CDS; Carlos, LD; Garcia-Flores, AF; Urbano, RR; Rettori, C 2019, ADVANCED FUNCTIONAL MATERIALS, 29, 8,
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Widening the Temperature Range of Luminescent Thermometers through the Intra- and Interconfigurational Transitions of Pr3+Brites, CDS; Fiaczyk, K; Ramalho, JFCB; Sojka, M; Carlos, LD; Zych, E 2018, ADVANCED OPTICAL MATERIALS, 6, 10,
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Upconversion thermometry: a new tool to measure the thermal resistance of nanoparticlesSavchuk, OA; Carvajal, JJ; Brites, CDS; Carlos, LD; Aguilo, M; Diaz, F 2018, NANOSCALE, 10, 14, 6602-6610.
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Radiation-to-heat conversion efficiency in SrF2:Yb3+/Er3+ upconverting nanoparticlesBalabhadra, S; Debasu, ML; Brites, CDS; Ferreira, RAS; Carlos, LD 2018, OPTICAL MATERIALS, 83, 1-6.
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Tethering Luminescent Thermometry and Plasmonics: Light Manipulation to Assess Real-Time Thermal Flow in NanoarchitecturesBrites, CDS; Fuertes, MC; Angelome, PC; Martinez, ED; Lima, PP; Soler-Illia, GJAA; Carlos, LD 2017, NANO LETTERS, 17, 8, 4746-4752.
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A cost-effective quantum yield measurement setup for upconverting nanoparticlesBalabhadra, S; Debasu, ML; Brites, CDS; Ferreira, RAS; Carlos, LD 2017, JOURNAL OF LUMINESCENCE, 189, 64-70.
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High-Performance Near-Infrared Luminescent Solar ConcentratorsRondao, R; Frias, AR; Correia, SFH; Fu, LS; Bermudez, VD; Andre, PS; Ferreira, RAS; Carlos, LD 2017, ACS APPLIED MATERIALS & INTERFACES, 9, 14, 12540-12546.
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Upconverting Nanoparticles Working As Primary Thermometers In Different MediaBalabhadra, S; Debasu, ML; Brites, CDS; Ferreira, RAS; Carlos, LD 2017, JOURNAL OF PHYSICAL CHEMISTRY C, 121, 25, 13962-13968.
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