Fiorenzo Vetrone
Overview
Explore the profile of Fiorenzo Vetrone including associated specialties, affiliations and a list of published articles.
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65
Citations
1133
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Recent Articles
1.
Butkiene G, Daugelaite A, Poderys V, Marin R, Steponkiene S, Kazlauske E, et al.
ACS Appl Mater Interfaces
. 2024 Sep;
16(37):49092-49103.
PMID: 39252643
Nanoparticles engineered to combat cancer and other life-threatening diseases may significantly improve patient outcomes. However, inefficient nanoparticle delivery to tumors limits their use and necessitates the development of complex delivery...
2.
Liu M, Liang J, Vetrone F
Acc Chem Res
. 2024 Aug;
57(18):2653-2664.
PMID: 39192666
ConspectusPhotoluminescence nanothermometry can detect the local temperature at the submicrometer scale with minimal contact with the object under investigation. Owing to its high spatial resolution, this technique shows great potential...
3.
Tam V, Picchetti P, Liu Y, Skripka A, Carofiglio M, Tamboia G, et al.
ACS Appl Mater Interfaces
. 2024 May;
16(22):29029-29041.
PMID: 38771192
Upconverting nanoparticles (UCNPs) doped with Yb and Tm are near-infrared (NIR) to ultraviolet (UV) transducers that can be used for NIR-controlled drug delivery. However, due to the low quantum yield...
4.
Liu M, Lai Y, Marquez M, Vetrone F, Liang J
Adv Sci (Weinh)
. 2024 Jan;
11(11):e2305284.
PMID: 38183381
The short-wave infrared (SWIR) photoluminescence lifetimes of rare-earth doped nanoparticles (RENPs) have found diverse applications in fundamental and applied research. Despite dazzling progress in the novel design and synthesis of...
5.
Matulionyte M, Skripka A, Ramos-Guerra A, Benayas A, Vetrone F
Chem Rev
. 2022 Dec;
123(1):515-554.
PMID: 36516409
Among luminescent nanostructures actively investigated in the last couple of decades, rare earth (RE) doped nanoparticles (RENPs) are some of the most reported family of materials. The development of RENPs...
6.
Raab M, Skripka A, Bulmahn J, Pliss A, Kuzmin A, Vetrone F, et al.
ACS Appl Bio Mater
. 2022 Sep;
PMID: 36153945
Rare-earth doped multi-shell nanoparticles slated for theranostic applications produce a variety of emission bands upon near-infrared (NIR) excitation. Their downshifting emission is useful for high-contrast NIR imaging, while the upconversion...
7.
Geng X, Congdon T, Anees P, Greschner A, Vetrone F, Gauthier M
Nanoscale Adv
. 2022 Sep;
2(9):4024-4033.
PMID: 36132774
Carbon nanodots (CNDs) have attracted substantial scientific curiosity because of their intriguing stimuli-responsive optical properties. However, one obstacle to the more widespread use of CNDs as transducers for , biodetection...
8.
Lucchini G, Speghini A, Canton P, Vetrone F, Quintanilla M
Nanoscale Adv
. 2022 Sep;
1(2):757-764.
PMID: 36132267
Upconversion nanothermometry combines the possibility of optically sensing temperatures in very small areas, such as microfluidic channels or on microelectronic chips, with a simple detection setup in the visible spectral...
9.
Quintanilla M, Hemmer E, Marques-Hueso J, Rohani S, Lucchini G, Wang M, et al.
Nanoscale
. 2022 Jan;
14(4):1492-1504.
PMID: 35024718
Upconverting nanoparticles (UCNPs) are well-known for their capacity to convert near-infrared light into UV/visible light, benefitting various applications where light triggering is required. At the nanoscale, loss of luminescence intensity...
10.
Huang H, Skripka A, Zaroubi L, Findlay B, Vetrone F, Skinner C, et al.
ACS Appl Bio Mater
. 2022 Jan;
3(10):7219-7227.
PMID: 35019380
Chronic wounds present a high risk of infection due to delayed and incomplete healing, leading to increased health risks and financial burden to health-care systems. Numerous approaches to promote wound...