Ongoing Supervisions
Projects
Iluminação inteligente centrada no ser humano e comunicações através da Internet das coisas (SLICIoT)
PartnerOther National
Lanthanide-based Molecular Information Processing Systems (LUMINOUS)
CoordinatorFundação para a Ciência e a Tecnologia
The LUMINOUS project is investigating molecular materials that use lanthanide ions for information processing. This innovative approach can overcome the current limitations of silicon technology. The project develops logic gates and cutting-edge solutions that will be integrated into hybrid computing systems. The project could have an impact on ...The ShApe of Water: Part II - Unveiling the Hidden Architecture (Aqua II)
PartnerFundação para a Ciência e a Tecnologia
THE SHAPE OF WATER: PART II - UNVEILING THE HIDDEN ARCHITECTURE WATER puts forward and intends to develop a unique and disruptive approach (including theoretical modeling and computer simulations) to investigate the intricate relationship among temperature, pH, surface density charge, and Brownian velocity in a range of differently sized upconve...Developing Efficient Heating-Sensing Single Nanoplatforms For Intracellular Imaging And Controlled Local Hyperthermia (NanoHeatControl)
PartnerFundação para a Ciência e a Tecnologia
FCT - MOBILITY INCOMING PRR_Carlos António Delgado Sousa Brites (FCT-MOBILITY - CB)
CoordinatorFundação para a Ciência e a Tecnologia
Molecular logic devices and computing based on luminescent materials actuated by physical inputs (LogicALL)
CoordinatorFundação para a Ciência e a Tecnologia
The shape of water: Nanothermometry as a tool to unveil the structure of liquid water and water-based nanofluids (THE SHAPE OF WATER )
PartnerFundação para a Ciência e a Tecnologia
Nanoparticles Nanothermometry Water local structure UpconversionPublications
Joining Time-Resolved Thermometry and Magnetic-Induced Heating in a Single Nanoparticle Unveils Intriguing Thermal Properties
Pinol, R; Brites, CDS; Bustamante, R; Martinez, A; Silva, NJO; Murillo, JL; Cases, R; Carrey, J; Estepa, C; Sosa, C; Palacio, F; Carlos, LD; Millan, A
2015, ACS NANO, 9, 3, 3134-3142.
>
A cryogenic luminescent ratiometric thermometer based on a lanthanide phosphonate dimer
Ren, M; Brites, CDS; Bao, SS; Ferreira, RAS; Zheng, LM; Carlos, LD
2015, JOURNAL OF MATERIALS CHEMISTRY C, 3, 33, 8480-8484.
>
Boosting the sensitivity of Nd3+-based luminescent nanothermometers
Balabhadra, S; Debasu, ML; Brites, CDS; Nunes, LAO; Malta, OL; Rocha, J; Bettinelli, M; Carlos, LD
2015, NANOSCALE, 7, 41, 17261-17267.
>
White OLED based on a temperature sensitive Eu3+/Tb3+ beta-diketonate complex
Lima, PP; Paz, FAA; Brites, CDS; Quirino, WG; Legnani, C; Silva, MCE; Ferreira, RAS; Junior, SA; Malta, OL; Cremona, M; Carlos, LD
2014, ORGANIC ELECTRONICS, 15, 3, 798-808.
>
Thermometry at the nanoscale using lanthanide-containing organic-inorganic hybrid materials
Brites, CDS; Lima, PP; Silva, NJO; Millan, A; Amaral, VS; Palacio, F; Carlos, LD
2013, JOURNAL OF LUMINESCENCE, 133, 230-232.
>
Ratiometric highly sensitive luminescent nanothermometers working in the room temperature range. Applications to heat propagation in nanofluids
Brites, CDS; Lima, PP; Silva, NJO; Millan, A; Amaral, VS; Palacio, F; Carlos, LD
2013, NANOSCALE, 5, 16, 7572-7580.
>
Ratiometric Nanothermometer Based on an Emissive Ln(3+)-Organic Framework
Cadiau, A; Brites, CDS; Costa, PMFJ; Ferreira, RAS; Rocha, J; Carlos, LD
2013, ACS NANO, 7, 8, 7213-7218.
>
Photonic-on-a-chip: a thermal actuated Mach-Zehnder interferometer and a molecular thermometer based on a single di-ureasil organic-inorganic hybrid
Ferreira, RAS; Brites, CDS; Vicente, CMS; Lima, PP; Bastos, ARN; Marques, PG; Hiltunen, M; Carlos, LD; Andre, PS
2013, LASER & PHOTONICS REVIEWS, 7, 6, 1027-1035.
>
Organic-Inorganic Eu3+/Tb3+ codoped hybrid films for temperature mapping in integrated circuits
Brites, CDS; Lima, PP; Silva, NJO; Millan, A; Amaral, VS; Palacio, F; Carlos, LD
2013, FRONTIERS IN CHEMISTRY, 1.
>
Metal-Free Highly Luminescent Silica Nanoparticles
Brites, CDS; Freitas, VT; Ferreira, RAS; Millan, A; Palacio, F; Carlos, LD
2012, LANGMUIR, 28, 21, 8190-8196.
>
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
>
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
>
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
>







