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Our Publications

1. A. Bednarkiewicz, K. Trejgis, J. Drabik, A. Kowalczyk, L. Marciniak, Phosphor assisted temperature sensing and imaging using resonant and non-resonant photoexcitation scheme, ACS Appl. Mater. Interfaces 9 (2017) 43081–43089.
 
 
 
4. K. Elzbieciak, A. Bednarkiewicz, L. Marciniak, Temperature sensitivity modulation through crystal field engineering in Ga3+ co-doped Gd3Al5-xGaxO12:Cr3+, Nd3+ nanothermometers, Sens and Actuators B 269 (2018) 96–102.

5. J. Drabik, B. Cichy, L. Marciniak, A New Type of Nanocrystalline Luminescent Thermometers Based on Ti3+/Ti4+ and Ti4+/Ln3+ (Ln3+=Nd3+, Eu3+, Dy3+) Luminescence Intensity Ratio, J Phys Chem C, 122 (2018) 14928–14936.

6. L. Marciniak, K. Trejgis, Luminescence lifetime thermometry with Mn3+-Mn4+ co-doped nanocrystals, J Mater Chem C, 6 (2018) 7092-7100.

7. K. Kniec, L. Marciniak, Spectroscopic properties of LaGaO3:V,Nd3+ nanocrystals as a potential luminescent thermometer, Phys Chem Chem Phys, 20 (2018) 21598-21606.

8. K. Elzbieciak, L. Marciniak, The impact of Cr3+ doping on temperature sensitivity modulation in Cr3+ doped and Cr3+,Nd3+ co-doped Y3Al5O12, Y3Al2Ga3O12 and Y3Ga5O12 nanothermometers, Front Chem 6 (2018) 424.

9. J. Drabik, L. Marciniak, The Influence of Eu3+ Concentration on the Spectroscopic Properties of YAG:Ti, Eu3+ Nanocrystalline Luminescent Thermometer, J Luminescence 208 (2019) 213-217.

10. A. Kobylinska, K. Kniec, K. Maciejewska, L. Marciniak, The influence of dopant concentration and grain size on the ability to temperature sensing using nanocrystalline MgAl2O4:Co2+, Nd3+ luminescent thermometers, New J Chem 43 (2019) 6080-6086.

11. C. Matuszewska, K. Elzbieciak-Piecka, L. Marciniak, Transition Metal Ion-Based Nanocrystalline Luminescent Thermometry in SrTiO3:Ni2+, Er3+ Nanocrystals Operating in the Second Optical Window of Biological Tissue, J Phys Chem C, 123 (2019) 18646-18653.

12. K. Kniec, L. Marciniak, Different strategies of stabilization of vanadium oxidation states in LaGaO3 nanocrystals, Front Chem 7 (2019) 520.

13. K. Elzbieciak-Piecka, C. Matuszewska, L. Marciniak, Step by step designing of sensitive luminescent nanothermometers based on Cr3+,Nd3+ co-doped La3-xLuxAl5-yGayO12 nanocrystals, New J Chem 43 (2019) 12614-12622.

14. K. Kniec, K. Ledwa, L. Marciniak, Enhancing the Relative Sensitivity of V5+, V4+ and V3+ Based Luminescent Thermometer by the Optimization of the Stoichiometry of Y3Al5−xGaxO12 Nanocrystals, Nanomaterials 9 (2019) 1375.

15. K. Kniec, M. Tikhomirov, B. Pozniak, K. Ledwa, L. Marciniak, LiAl5O8:Fe3+ and LiAl5O8:Fe3+, Nd3+ as a New Luminescent Nanothermometer Operating in 1st Biological Optical Window, Nanomaterials 10 (2020) 189.

16. L. Marciniak, K. Elzbieciak-Piecka, K. Kniec, A. Bednarkiewicz, Assessing thermometric performance of Sr2CeO4 and Sr2CeO4:Ln3+ (Ln3+=Sm3+, Ho3+, Nd3+, Yb3+) nanocrystals in spectral and temporal domain, Chem Eng J 388 (2020) 124347.

17. K. Maciejewska, B. Pozniak, M. Tikhomirov, A. Kobylinska, L. Marciniak, Synthesis, cytotoxicity assessment and optical properties characterization of colloidal GdPO4: Mn2+,Eu3+ for high sensitivity luminescent nanothermometers operating in the physiological temperature range, Nanomaterials 10 (2020) 421.

18. M. Ivor, D. Medved, M. Vojtko, A. Naughton-Duszova, L. Marciniak, J. Dusza, Nanoindentation and tribology of ZrB2based luminescent ceramics, J. Eur. Ceram. Soc. 40 (2020) 4901-4908.

19. C. Matuszewska, L. Marciniak, The influence of host material on NIR II and NIR III emitting Ni2+-based luminescent thermometers in ATiO3: Ni2+(A = Sr, Ca, Mg, Ba) nanocrystals, J Lumin 223 (2020) 117221.

20. K. Kniec, K. Ledwa, K. Maciejewska, L. Marciniak, Intentional modification of the optical spectral response and relative sensitivity of luminescent thermometers based on Fe3+,Cr3+,Nd3+co-doped garnets nanocrystals by the crystal field strength optimization, Mater Chem Front 4 (2020) 1697-1705.

21. A. Naughton-Duszova, L. Marciniak, A. Dubiel, J. Laszkiewicz-Lukasik, K. Kniec, M. Podsiadlo, ZrB2 matrix composites with Al2O3: 1% Cr3+, 1% Nd3+luminescent nanoparticles for noncontact temperature sensing, Processing and Application of Ceramics 14 (2020) 181-187.

22. A. Bednarkiewicz, L. Marciniak, L. A. D. Carlos, D. Jaque, Standardizing optical nanothermometry for biomedical applications, Nanoscale 12 (2020) 14405-14421.

23. K. Maciejewska, L. Marciniak, Multimodal Stokes and Anti-Stokes luminescent thermometers based on GdP5O14 co-doped with Cr3+ and Nd3+ ions, Chem Eng J. 402 (2020) 126197.

24. K. Elzbieciak-Piecka, J. Drabik, D. Jaque, L. Marciniak, Cr3+ based nanocrystalline luminescent thermometers operating in a temporal domain, Phys Chem Chem Phys, 22 (2020) 25949-25962.

25. K. Kniec, W. Piotrowski, K. Ledwa, L. D. Carlos, L. Marciniak, Spectral and thermometric properties altering through crystal field strength modification and host material composition in luminescent thermometers based on Fe3+ doped AB2O4 type nanocrystals (A= Mg, Ca; B=Al, Ga), J Mater Chem C 9 (2021) 517-527.

26. K. Elzbieciak-Piecka, M. Suta, L. Marciniak, Structurally induced tuning of the relative sensitivity of LaScO3:Cr3+ luminescent thermometers by co-doping lanthanide ions, Chem Eng J 421 (2021) 129757.

27. K. Trejgis, M. Dramicanin, L. Marciniak, Highly sensitive multiparametric luminescent thermometer for biologically-relevant temperatures based on Mn4+, Ln3+ co-doped SrTiO3 nanocrystals, J Alloys and Compd 875 (2021) 159973.

28. K. Kniec, W. Piotrowski, K. Ledwa, M. Suta, L. D. Carlos, L. Marciniak, From quencher to potent activator – Multimodal luminescence thermometry with Fe3+ in the oxides MAl4O7 (M = Ca, Sr, Ba), J Mater Chem C 9 (2021) 6268-6276.

29. W. Piotrowski, M. Kuchowicz, M. Dramićanin, L. Marciniak, Lanthanide dopant stabilized Ti3+ state and supersensitive Ti3+ -based multiparametric luminescent thermometer in SrTiO3:Ln3+ (Ln3+ = Lu3+, La3+, Tb3+) nanocrystals, Chem Eng J 428 (2021) 131165.

30. W. M. Piotrowski, K. Trejgis, M. Dramicanin, L. Marciniak, Strong sensitivity enhancement in lifetime-based luminescence thermometry by co-doping of SrTiO3:Mn4+ nanocrystals with trivalent lanthanide ions, J. Mater. Chem. C 9 (2021) 10309-10316.