Ongoing Supervisions
Projects
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 (PTDC/NAN-PRO/3881/2020)
PartnerFundação para a Ciência e a Tecnologia
Nanoparticles Nanothermometry Water local structure UpconversionPublications
Decoding a Percolation Phase Transition of Water at similar to 330 K with a Nanoparticle Ruler
Brites, 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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Exploring Single-Nanoparticle Dynamics at High Temperature by Optical Tweezers
Lu, DS; Labrador-Paez, L; Ortiz-Rivero, E; Frades, P; Antoniak, MA; Wawrzynczyk, D; Nyk, M; Brites, CDS; Carlos, LD; Sole, JAG; Haro-Gonzalez, P; Jaque, D
2020, NANO LETTERS, 20, 11, 8024-8031.
ISBN:
1530-6992
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Decoding a Percolation Phase Transition of water at ~330 K with a Nanoparticle Ruler
C. D. Brites, B. Zhuang, M. L. Debasu, D. Ding, X. Qin, F. E. Maturi, W. W. Y. Lim, D. W. Soh, J. Rocha, Z. Yi, X. Liu, L. D. Carlos
2020, The Journal of Physical Chemistry Letters.
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Self-Calibrated Double Luminescent Thermometers Through Upconverting Nanoparticles
Brites, 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 Thermometry
Brites, CDS; Balabhadra, S; Carlos, LD
2019, ADVANCED OPTICAL MATERIALS, 7, 5.
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Upconversion Nanocomposite Materials With Designed Thermal Response for Optoelectronic Devices
Martinez, ED; Brites, CDS; Carlos, LD; Urbano, RR; Rettori, C
2019, FRONTIERS IN CHEMISTRY, 7.
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Electrochromic Switch Devices Mixing Small- and Large-Sized Upconverting Nanocrystals
Martinez, ED; Brites, CDS; Carlos, LD; Garcia-Flores, AF; Urbano, RR; Rettori, C
2019, ADVANCED FUNCTIONAL MATERIALS, 29, 8.
ISBN:
1616-3028
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Bandgap Engineering and Excitation Energy Alteration to Manage Luminescence Thermometer Performance. The Case of Sr-2(Ge,Si)O-4:Pr3+
Sojka, M; Ramalho, JFCB; Brites, CDS; Fiaczyk, K; Carlos, LD; Zych, E
2019, ADVANCED OPTICAL MATERIALS, 7, 23.
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Thermal Properties of Lipid Bilayers Determined Using Upconversion Nanothermometry
Bastos, ARN; Brites, CDS; Rojas-Gutierrez, PA; DeWolf, C; Ferreira, RAS; Capobianco, JA; Carlos, LD
2019, ADVANCED FUNCTIONAL MATERIALS, 29, 48.
ISBN:
1616-3028
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Luminescence Thermometry on the Route of the Mobile-Based Internet of Things (IoT): How Smart QR Codes Make It Real
Ramalho, JFCB; Correia, SFH; Fu, LS; Antonio, LLF; Brites, CDS; Andre, PS; Ferreira, RAS; Carlos, LD
2019, ADVANCED SCIENCE, 6, 19.
ISBN:
2198-3844
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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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