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Karolina Trejgis
Karolina Trejgis
Institute of Low Temperature and Structure Research PAS
Email verificata su intibs.pl
Titolo
Citata da
Citata da
Anno
Optimization of highly sensitive YAG: Cr 3+, Nd 3+ nanocrystal-based luminescent thermometer operating in an optical window of biological tissues
L Marciniak, A Bednarkiewicz, J Drabik, K Trejgis, W Strek
Physical Chemistry Chemical Physics 19 (10), 7343-7351, 2017
1242017
Luminescence lifetime thermometry with Mn 3+–Mn 4+ co-doped nanocrystals
L Marciniak, K Trejgis
Journal of Materials Chemistry C 6 (26), 7092-7100, 2018
1112018
Luminescence based temperature bio-imaging: Status, challenges, and perspectives
A Bednarkiewicz, J Drabik, K Trejgis, D Jaque, E Ximendes, L Marciniak
Applied Physics Reviews 8 (1), 2021
922021
Thermochromic Luminescent Nanomaterials Based on Mn4+/Tb3+ Codoping for Temperature Imaging with Digital Cameras
W Piotrowski, K Trejgis, K Maciejewska, K Ledwa, B Fond, L Marciniak
ACS Applied Materials & Interfaces 12 (39), 44039-44048, 2020
912020
The influence of manganese concentration on the sensitivity of bandshape and lifetime luminescent thermometers based on Y 3 Al 5 O 12: Mn 3+, Mn 4+, Nd 3+ nanocrystals
K Trejgis, L Marciniak
Physical Chemistry Chemical Physics 20 (14), 9574-9581, 2018
912018
Engineering excited state absorption based nanothermometry for temperature sensing and imaging
K Trejgis, A Bednarkiewicz, L Marciniak
Nanoscale 12 (7), 4667-4675, 2020
832020
Luminescence thermometry with transition metal ions. A review
L Marciniak, K Kniec, K Elżbieciak-Piecka, K Trejgis, J Stefanska, ...
Coordination Chemistry Reviews 469, 214671, 2022
822022
Near-Infrared-to-Near-Infrared Excited-State Absorption in LaPO4:Nd3+ Nanoparticles for Luminescent Nanothermometry
K Trejgis, K Maciejewska, A Bednarkiewicz, L Marciniak
ACS Applied Nano Materials 3 (5), 4818-4825, 2020
482020
Phosphor-assisted temperature sensing and imaging using resonant and nonresonant photoexcitation scheme
A Bednarkiewicz, K Trejgis, J Drabik, A Kowalczyk, L Marciniak
ACS applied materials & interfaces 9 (49), 43081-43089, 2017
452017
Enhancing the sensitivity of a Nd 3+, Yb 3+: YVO 4 nanocrystalline luminescent thermometer by host sensitization
L Marciniak, A Bednarkiewicz, K Trejgis, K Maciejewska, K Elzbieciak, ...
Physical Chemistry Chemical Physics 21 (20), 10532-10539, 2019
422019
Upconverting SrF2:Er3+ Nanoparticles for Optical Temperature Sensors
S Ryszczynska, K Trejgis, Ł Marciniak, T Grzyb
ACS Applied Nano Materials 4 (10), 10438-10448, 2021
392021
Fabrication and characterization of up-converting β-NaYF4:Er3+,Yb3+@NaYF4 core–shell nanoparticles for temperature sensing applications
LTK Giang, K Trejgis, L Marciniak, N Vu, LQ Minh
Scientific Reports 10 (1), 14672, 2020
292020
Nd3+ doped TZPN glasses for NIR operating single band ratiometric approach of contactless temperature readout
K Trejgis, R Lisiecki, A Bednarkiewicz, L Marciniak
Journal of Luminescence 224, 117295, 2020
272020
Highly sensitive multiparametric luminescent thermometer for biologically-relevant temperatures based on Mn4+, Ln3+ co-doped SrTiO3 nanocrystals
K Trejgis, MD Dramićanin, L Marciniak
Journal of Alloys and Compounds 875, 159973, 2021
252021
The role of surface related quenching in the single band ratiometric approach based on excited state absorption processes in Nd3+ doped phosphors
K Trejgis, F Tian, J Li, A Bednarkiewicz, L Marciniak
Materials Research Bulletin 139, 111288, 2021
182021
Strong sensitivity enhancement in lifetime-based luminescence thermometry by co-doping of SrTiO 3: Mn 4+ nanocrystals with trivalent lanthanide ions
WM Piotrowski, K Trejgis, M Dramicanin, L Marciniak
Journal of Materials Chemistry C 9 (32), 10309-10316, 2021
162021
Effect of the nanoparticle size on thermometric properties of a single-band ratiometric luminescent thermometer in NaYF 4: Nd 3+
K Trejgis, K Ledwa, L Li, L Marciniak
Journal of Materials Chemistry C 10 (8), 3006-3014, 2022
122022
Modulation of thermometric performance of single-band-ratiometric luminescent thermometers based on luminescence of Nd3+ activated tetrafluorides by size …
K Trejgis, K Ledwa, K Maciejewska, L Li, L Marciniak
Scientific Reports 12 (1), 5847, 2022
72022
Impact of host composition and dopant ion concentration on the thermometric properties of a Eu3+ activated fluoride-based single-band ratiometric luminescent thermometer
K Trejgis, K Ledwa, A Bednarkiewicz, L Marciniak
Journal of Alloys and Compounds 898, 162839, 2022
72022
A single-band ratiometric luminescent thermometer based on tetrafluorides operating entirely in the infrared region
K Trejgis, K Ledwa, A Bednarkiewicz, L Marciniak
Nanoscale Advances 4 (2), 437-446, 2022
62022
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
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