Supervisões em Curso
Projectos
A forma da água: a nanotermometria como ferramenta para desvendar a estrutura da água líquida e de soluções coloidais. (THE SHAPE OF WATER )
ParticipanteFundação para a Ciência e a Tecnologia
Nanopartículas Nanotermometria Estrutura local da água Conversão ascendente de energiaDESENVOLVIMENTO DE NANOPLATAFORMAS EFICIENTES DE AQUECIMENTO E MONITORIZAC?A?O PARA IMAGEM INTRACELLULAR E HIPERTRMIA LOCAL CONTROLADA. (NanoHeatControl)
ParticipanteFundação para a Ciência e a Tecnologia
Dispositivos lógicos moleculares e computação baseada em materiais luminescentes atuados estímulos físicos" (LogicALL)
CoordenadorFundação para a Ciência e a Tecnologia
Publicações
Tuning the sensitivity of Ln(3+)-based luminescent molecular thermometers through ligand design
Brites, CDS; Lima, PP; Carlos, LD
2016, JOURNAL OF LUMINESCENCE, 169, 497-502.
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Unveiling in Vivo Subcutaneous Thermal Dynamics by Infrared Luminescent Nanothermometers
Ximendes, EC; Santos, WQ; Rocha, U; Kagola, UK; Sanz-Rodriguez, F; Fernandez, N; Gouveia-Neto, AD; Bravo, D; Domingo, AM; del Rosal, B; Brites, CDS; Carlos, LD; Jaque, D; Jacinto, C
2016, NANO LETTERS, 16, 3, 1695-1703.
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Instantaneous ballistic velocity of suspended Brownian nanocrystals measured by upconversion nanothermometry
Brites, CDS; Xie, XJ; Debasu, ML; Qin, X; Chen, RF; Huang, W; Rocha, J; Liu, XG; Carlos, LD
2016, NATURE NANOTECHNOLOGY, 11, 10, 851-+.
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Implementing luminescence thermometry at 1.3 mu m using (GdNd)(2)O-3 nanoparticles
Balabhadra, S; Debasu, ML; Brites, CDS; Rocha, J; Carlos, LD
2016, JOURNAL OF LUMINESCENCE, 180, 25-30.
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Nanoplatforms for Plasmon-Induced Heating and Thermometry
Debasu, ML; Brites, CDS; Balabhadra, S; Oliveira, H; Rocha, J; Carlos, LD
2016, CHEMNANOMAT, 2, 6, 520-527.
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A New Generation of Primary Luminescent Thermometers Based on Silicon Nanoparticles and Operating in Different Media
Botas, AMP; Brites, CDS; Wu, J; Kortshagen, U; Pereira, RN; Carlos, LD; Ferreira, RAS
2016, PARTICLE & PARTICLE SYSTEMS CHARACTERIZATION, 33, 10, 740-748.
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Cryogenic Nanothermometer Based on the MIL-103(Tb,Eu) Metal-Organic Framework
Ananias, D; Brites, CDS; Carlos, LD; Rocha, J
2016, EUROPEAN JOURNAL OF INORGANIC CHEMISTRY, 13-14, 1967-1971.
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Implementing Thermometry on Silicon Surfaces Functionalized by Lanthanide-Doped Self-Assembled Polymer Monolayers
Rodrigues, M; Pinol, R; Antorrena, G; Brites, CDS; Silva, NJO; Murillo, JL; Cases, R; Diez, I; Palacio, F; Torras, N; Plaza, JA; Perez-Garcia, L; Carlos, LD; Millan, A
2016, ADVANCED FUNCTIONAL MATERIALS, 26, 2, 200-209.
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Lanthanide Organic Framework Luminescent Thermometers
Rocha, J; Brites, CDS; Carlos, LD
2016, CHEMISTRY-A EUROPEAN JOURNAL, 22, 42, 14782-14795.
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Visible-Light Excited Luminescent Thermometer Based on Single Lanthanide Organic Frameworks
Li, L; Zhu, YL; Zhou, XH; Brites, CDS; Ananias, D; Lin, Z; Paz, FAA; Rocha, J; Huang, W; Carlos, LD
2016, ADVANCED FUNCTIONAL MATERIALS, 26, 47, 8677-8684.
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An overview of luminescent primary thermometers

In J. J. Carvajal Martí and M. C. Pujol Baiges (Eds.), Luminescent Thermometry: Applications and Uses
Joana C. Martins, Carlos D.S. Brites, Albano N. Carneiro Neto, Rute A. S. Ferreira, Luís D. Carlos
2023, 105-152, Springer.
ISBN:
978-3-031-28515-8
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Nanoscale Thermometry for Hyperthermia Applications

In Raluca Maria Fratila, Jesús Martínez De La Fuente (Eds.), Nanomaterials for Magnetic and Optical Hyperthermia Applications
Rafael Piñol, Carlos D.S. Brites, Nuno J. Silva, Luis D. Carlos, Angel Millán
2019, 139-172, Elsevier.
ISBN:
978-0-12-813928-8
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Chapter 281 – Lanthanides in Luminescent Thermometry

In Karl A. Gschneidner, Jean-Claude BŸnzli, Vitalij Pecharsky (Eds.), Handbook on the Physics and Chemistry of Rare Earths, Volume 49
C.D.S. Brites, A. Millán, L.D. Carlos
2016, 339-427, Elsevier B.V..
ISBN:
978-0-444-63851-9
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