Search Results - "Carlos, Luís D."
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Standardizing luminescence nanothermometry for biomedical applications
Published in Nanoscale (16-07-2020)“…Luminescence nanothermometry enables accurate, remote, and all-optically-based thermal sensing. Notwithstanding its fast development, there are serious…”
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Lanthanide Organic Framework Luminescent Thermometers
Published in Chemistry : a European journal (10-10-2016)“…Metal–organic frameworks (MOFs) are excellent platforms for engineering luminescence properties as their building blocks, metal ions, linkers, and guest ions…”
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Developing Luminescent Ratiometric Thermometers Based on a Covalent Organic Framework (COF)
Published in Angewandte Chemie International Edition (27-01-2020)“…Covalent Organic Frameworks (COFs), an emerging class of crystalline porous materials, are proposed as a new type of support for grafting lanthanide ions…”
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Lanthanide‐Based Thermometers: At the Cutting‐Edge of Luminescence Thermometry
Published in Advanced optical materials (05-03-2019)“…Present technological demands in disparate areas, such as microfluidics and nanofluidics, microelectronics and nanoelectronics, photonics and biomedicine,…”
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Upconverting Nanoparticles Working As Primary Thermometers In Different Media
Published in Journal of physical chemistry. C (29-06-2017)“…In the past decade, noninvasive luminescent thermometry has become popular due to the limitations of traditional contact thermometers to operate at scales…”
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Spotlight on Luminescence Thermometry: Basics, Challenges, and Cutting‐Edge Applications
Published in Advanced materials (Weinheim) (01-09-2023)“…Luminescence (nano)thermometry is a remote sensing technique that relies on the temperature dependency of the luminescence features (e.g., bandshape, peak…”
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Optical Properties of Hybrid Organic-Inorganic Materials and their Applications
Published in Advanced functional materials (01-09-2016)“…Research on hybrid inorganic‐organic materials has experienced an explosive growth since the 1980s, with the expansion of soft inorganic chemistry based…”
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Lanthanide-Organic Framework Nanothermometers Prepared by Spray-Drying
Published in Advanced functional materials (01-05-2015)“…Accurate, noninvasive, and self‐referenced temperature measurements at the submicrometer scale are of great interest, prompted by the ever‐growing demands in…”
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Joining Time-Resolved Thermometry and Magnetic-Induced Heating in a Single Nanoparticle Unveils Intriguing Thermal Properties
Published in ACS nano (24-03-2015)“…Whereas efficient and sensitive nanoheaters and nanothermometers are demanding tools in modern bio- and nanomedicine, joining both features in a single…”
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Lanthanide-Containing Light-Emitting Organic-Inorganic Hybrids: A Bet on the Future
Published in Advanced materials (Weinheim) (02-02-2009)“…Interest in lanthanide‐containing organic–inorganic hybrids has grown considerably during the last decade, with the concomitant fabrication of materials with…”
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Photoluminescent Thermometer Based on a Phase-Transition Lanthanide Silicate with Unusual Structural Disorder
Published in Journal of the American Chemical Society (04-03-2015)“…The hydrothermal synthesis of the novel Na[LnSiO4] (Ln = Gd, Eu, Tb) disordered orthorhombic system is reported. At 100 K, and above, these materials are best…”
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Inert Shell Effect on the Quantum Yield of Neodymium-Doped Near-Infrared Nanoparticles: The Necessary Shield in an Aqueous Dispersion
Published in Nano letters (14-10-2020)“…Lanthanide-doped nanoparticles (LnNPs) are versatile near-infrared (NIR) emitting nanoprobes that have led to their growing interest for use in…”
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All-In-One Optical Heater-Thermometer Nanoplatform Operative From 300 to 2000 K Based on Er3+ Emission and Blackbody Radiation
Published in Advanced materials (Weinheim) (20-09-2013)“…A single nanoplatform integrating laser‐induced heat generation by gold nanoparticles and temperature sensing up to 2000 K via (Gd,Yb,Er)2O3 nanorods is…”
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Widening the Temperature Range of Luminescent Thermometers through the Intra‐ and Interconfigurational Transitions of Pr3
Published in Advanced optical materials (22-05-2018)“…In this study, it is shown how the temperature range of luminescent thermometers can be widened in an unprecedented way by combining the intra‐ and…”
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15
Luminescent Single‐Molecule Magnets as Dual Magneto‐Optical Molecular Thermometers
Published in Angewandte Chemie International Edition (28-08-2023)“…Luminescent thermometry allows the remote detection of the temperature and holds great potential in future technological applications in which conventional…”
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Engineering of Mixed Eu3+/Tb3+ Metal‐Organic Frameworks Luminescent Thermometers with Tunable Sensitivity
Published in Advanced optical materials (01-03-2021)“…In the last decade, numerous Ln‐bearing metal‐organic frameworks (MOFs) have been reported for luminescence thermometry applications. Although the Ln3+…”
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Dynamics of the Energy Transfer Process in Eu(III) Complexes Containing Polydentate Ligands Based on Pyridine, Quinoline, and Isoquinoline as Chromophoric Antennae
Published in Inorganic chemistry (17-10-2022)“…In this work, we investigated from a theoretical point of view the dynamics of the energy transfer process from the ligand to Eu(III) ion for 12 isomeric…”
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Excimer Formation in a Terbium Metal–Organic Framework Assists Luminescence Thermometry
Published in Chemistry of materials (14-11-2017)“…Photoluminescent isotypical phosphonate-based metal–organic frameworks, [Ln(H5btp)]·2H2O [where Ln3+ = Tb3+ (1) or Gd3+ (2) and H8btp =…”
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Near‐Infrared Ratiometric Luminescent Thermometer Based on a New Lanthanide Silicate
Published in Chemistry : a European journal (14-08-2018)“…A new lanthanide silicate system, Na2K[Ln3Si6O18] (Ln=Lu, Yb/ Er, Lu/Eu, or Lu/Yb/Er), comprising microcrystals embedded in an amorphous siliceous matrix,…”
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Multimodal Tuning of Synaptic Plasticity Using Persistent Luminescent Memitters
Published in Advanced materials (Weinheim) (01-06-2022)“…Mimicking memory processes, including encoding, storing, and retrieving information, is critical for neuromorphic computing and artificial intelligence…”
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